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首页 » 英文短篇小说 » The Movements and Habits of Climbing Plants » Chapter III. — Tendril-Bearers
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Chapter III. — Tendril-Bearers
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Nature of tendrils — BIGNONIACEAE, various species of, and their different modes of climbing — Tendrils which avoid the light and creep into crevices2 — Development of adhesive3 discs — Excellent adaptations for seizing different kinds of supports. — POLEMONIACEAE— Cobaea scandens much branched and hooked tendrils, their manner of action — LEGUMINOSAE— COMPOSITAE— SMILACEAE— Smilax aspera, its inefficient4 tendrils — FUMARIACEAE— Corydalis claviculata, its state intermediate between that of a leaf-climber and a tendril-bearer.

By tendrils I mean filamentary5 organs, sensitive to contact and used exclusively for climbing. By this definition, spines6, hooks and rootlets, all of which are used for climbing, are excluded. True tendrils are formed by the modification7 of leaves with their petioles, of flower-peduncles, branches, 24 and perhaps stipules. Mohl, who includes under the name of tendrils various organs having a similar external appearance, classes them according to their homological nature, as being modified leaves, flower-peduncles, &c. This would be an excellent scheme; but I observe that botanists9 are by no means unanimous on the homological nature of certain tendrils. Consequently I will describe tendril-bearing plants by natural families, following Lindley’s classification; and this will in most cases keep those of the same nature together. The species to be described belong to ten families, and will be given in the following order:— Bignoniaceae, Polemoniaceae, Leguminosae, Compositae, Smilaceae, Fumariaceae, Cucurbitaceae, Vitaceae, Sapindaceae, Passifloraceae. 25

BIGNONIACEAE. — This family contains many tendril-bearers, some twiners, and some root-climbers. The tendrils always consist of modified leaves. Nine species of Bignonia, selected by hazard, are here described, in order to show what diversity of structure and action there may be within the same genus, and to show what remarkable12 powers some tendrils possess. The species, taken together, afford connecting links between twiners, leaf-climbers, tendril-bearers, and root-climbers.

Bignonia (an unnamed species from Kew, closely allied13 to B. unguis, but with smaller and rather broader leaves). — A young shoot from a cut-down plant made three revolutions against the sun, at an average rate of 2 hrs. 6m. The stem is thin and flexible; it twined round a slender vertical14 stick, ascending16 from left to right, as perfectly17 and as regularly as any true twining-plant. When thus ascending, it makes no use of its tendrils or petioles; but when it twined round a rather thick stick, and its petioles were brought into contact with it, these curved round the stick, showing that they have some degree of irritability18. The petioles also exhibit a slight degree of spontaneous movement; for in one case they certainly described minute, irregular, vertical ellipses19. The tendrils apparently20 curve themselves spontaneously to the same side with the petioles; but from various causes, it was difficult to observe the movement of either the tendrils or petioles, in this and the two following species. The tendrils are so closely similar in all respects to those of B. unguis, that one description will suffice.

Bignonia unguis. — The young shoots revolve21, but less regularly and less quickly than those of the last species. The stem twines22 imperfectly round a vertical stick, sometimes reversing its direction, in the same manner as described in so many leaf-climbers; and this plant though possessing tendrils, climbs to a certain extent like a leaf-climber. Each leaf consists of a petiole bearing a pair of leaflets, and terminates in a tendril, which is formed by the modification of three leaflets, and closely resembles that above figured (fig23. 5). But it is a little larger, and in a young plant was about half an inch in length. It is curiously24 like the leg and foot of a small bird, with the hind25 toe cut off. The straight leg or tarsus is longer than the three toes, which are of equal length, and diverging26, lie in the same plane. The toes terminate in sharp, hard claws, much curved downwards27, like those on a bird’s foot. The petiole of the leaf is sensitive to contact; even a small loop of thread suspended for two days caused it to bend upwards28; but the sub-petioles of the two lateral29 leaflets are not sensitive. The whole tendril, namely, the tarsus and the three toes, are likewise sensitive to contact, especially on their under surfaces. When a shoot grows in the midst of thin branches, the tendrils are soon brought by the revolving31 movement of the internodes into contact with them; and then one toe of the tendril or more, commonly all three, bend, and after several hours seize fast hold of the twigs32, like a bird when perched. If the tarsus of the tendril comes into contact with a twig33, it goes on slowly bending, until the whole foot is carried quite round, and the toes pass on each side of the tarsus and seize it. In like manner, if the petiole comes into contact with a twig, it bends round, carrying the tendril, which then seizes its own petiole or that of the opposite leaf. The petioles move spontaneously, and thus, when a shoot attempts to twine11 round an upright stick, those on both sides after a time come into contact with it, and are excited to bend. Ultimately the two petioles clasp the stick in opposite directions, and the foot-like tendrils, seizing on each other or on their own petioles, fasten the stem to the support with surprising security. The tendrils are thus brought into action, if the stem twines round a thin vertical stick; and in this respect the present species differs from the last. Both species use their tendrils in the same manner when passing through a thicket34. This plant is one of the most efficient climbers which I have observed; and it probably could ascend15 a polished stem incessantly35 tossed by heavy storms. To show how important vigorous health is for the action of all the parts, I may mention that when I first examined a plant which was growing moderately well, though not vigorously, I concluded that the tendrils acted only like the hooks on a bramble, and that it was the most feeble and inefficient of all climbers!

Bignonia Tweedyana. — This species is closely allied to the last, and behaves in the same manner; but perhaps twines rather better round a vertical stick. On the same plant, one branch twined in one direction and another in an opposite direction. The internodes in one case made two circles, each in 2 hrs. 33 m. I was enabled to observe the spontaneous movements of the petioles better in this than in the two preceding species: one petiole described three small vertical ellipses in the course of 11 hrs., whilst another moved in an irregular spire36. Some little time after a stem has twined round an upright stick, and is securely fastened to it by the clasping petioles and tendrils, it emits aerial roots from the bases of its leaves; and these roots curve partly round and adhere to the stick. This species of Bignonia, therefore, combines four different methods of climbing generally characteristic of distinct plants, namely, twining, leaf-climbing, tendril-climbing, and root-climbing.

In the three foregoing species, when the foot-like tendril has caught an object, it continues to grow and thicken, and ultimately becomes wonderfully strong, in the same manner as the petioles of leaf-climbers. If the tendril catches nothing, it first slowly bends downwards, and then its power of clasping is lost. Very soon afterwards it disarticulates itself from the petiole, and drops off like a leaf in autumn. I have seen this process of disarticulation in no other tendrils, for these, when they fail to catch an object, merely wither39 away.

Bignonia venusta. — The tendrils differ considerably40 from those of the previous species. The lower part, or tarsus, is four times as long as the three toes; these are of equal length and diverge41 equally, but do not lie in the same plane; their tips are bluntly hooked, and the whole tendril makes an excellent grapnel. The tarsus is sensitive on all sides; but the three toes are sensitive only on their outer surfaces. The sensitiveness is not much developed; for a slight rubbing with a twig did not cause the tarsus or the toes to become curved until an hour had elapsed, and then only in a slight degree. Subsequently they straightened themselves. Both the tarsus and toes can seize well hold of sticks. If the stem is secured, the tendrils are seen spontaneously to sweep large ellipses; the two opposite tendrils moving independently of one another. I have no doubt, from the analogy of the two following allied species, that the petioles also move spontaneously; but they are not irritable42 like those of B. unguis and B. Tweedyana. The young internodes sweep large circles, one being completed in 2 hrs. 15 m., and a second in 2 hrs. 55 m. By these combined movements of the internodes, petioles, and grapnel-like tendrils, the latter are soon brought into contact with surrounding objects. When a shoot stands near an upright stick, it twines regularly and spirally round it. As it ascends43, it seizes the stick with one of its tendrils, and, if the stick be thin, the right-and left-hand tendrils are alternately used. This alternation follows from the stem necessarily taking one twist round its own axis44 for each completed circle.

The tendrils contract spirally a short time after catching45 any object; those which catch nothing merely bend slowly downwards. But the whole subject of the spiral contraction46 of tendrils will be discussed after all the tendril-bearing species have been described.

Bignonia littoralis. — The young internodes revolve in large ellipses. An internode bearing immature47 tendrils made two revolutions, each in 3 hrs. 50 m.; but when grown older with the tendrils mature, it made two ellipses, each at the rate of 2 hrs. 44 m. This species, unlike the preceding, is incapable48 of twining round a stick: this does not appear to be due to any want of flexibility49 in the internodes or to the action of the tendrils, and certainly not to any want of the revolving power; nor can I account for the fact. Nevertheless the plant readily ascends a thin upright stick by seizing a point above with its two opposite tendrils, which then contract spirally. If the tendrils seize nothing, they do not become spiral.

The species last described, ascended50 a vertical stick by twining spirally and by seizing it alternately with its opposite tendrils, like a sailor pulling himself up a rope, hand over hand; the present species pulls itself up, like a sailor seizing with both hands together a rope above his head.

The tendrils are similar in structure to those of the last species. They continue growing for some time, even after they have clasped an object. When fully37 grown, though borne by a young plant, they are 9 inches in length. The three divergent toes are shorter relatively51 to the tarsus than in the former species; they are blunt at their tips and but slightly hooked; they are not quite equal in length, the middle one being rather longer than the others. Their outer surfaces are highly sensitive; for when lightly rubbed with a twig, they became perceptibly curved in 4 m. and greatly curved in 7 m. In 7 hrs. they became straight again and were ready to re-act. The tarsus, for the space of one inch close to the toes, is sensitive, but in a rather less degree than the toes; for the latter after a slight rubbing, became curved in about half the time. Even the middle part of the tarsus is sensitive to prolonged contact, as soon as the tendril has arrived at maturity52. After it has grown old, the sensitiveness is confined to the toes, and these are only able to curl very slowly round a stick. A tendril is perfectly ready to act, as soon as the three toes have diverged53, and at this period their outer surfaces first become irritable. The irritability spreads but little from one part when excited to another: thus, when a stick was caught by the part immediately beneath the three toes, these seldom clasped it, but remained sticking straight out.

The tendrils revolve spontaneously. The movement begins before the tendril is converted into a three-pronged grapnel by the divergence54 of the toes, and before any part has become sensitive; so that the revolving movement is useless at this early period. The movement is, also, now slow, two ellipses being completed conjointly in 24 hrs. 18 m. A mature tendril made an ellipse in 6 hrs.; so that it moved much more slowly than the internodes. The ellipses which were swept, both in a vertical and horizontal plane, were of large size. The petioles are not in the least sensitive, but revolve like the tendrils. We thus see that the young internodes, the petioles, and the tendrils all continue revolving together, but at different rates. The movements of the tendrils which rise opposite one another are quite independent. Hence, when the whole shoot is allowed freely to revolve, nothing can be more intricate than the course followed by the extremity55 of each tendril. A wide space is thus irregularly searched for some object to be grasped.

One other curious point remains56 to be mentioned. In the course of a few days after the toes have closely clasped a stick, their blunt extremities57 become developed, though not invariably, into irregular disc-like balls which have the power of adhering firmly to the wood. As similar cellular58 outgrowths will be fully described under B. capreolata, I will here say nothing more about them.

Bignonia aequinoctialis, var. Chamberlaynii. — The internodes, the elongated59 non-sensitive petioles, and the tendrils all revolve. The stem does not twine, but ascends a vertical stick in the same manner as the last species. The tendrils also resemble those of the last species, but are shorter; the three toes are more unequal in length, the two outer ones being about one-third shorter and rather thinner than the middle toe; but they vary in this respect. They terminate in small hard points; and what is important, cellular adhesive discs are not developed. The reduced size of two of the toes as well as their lessened60 sensitiveness, seem to indicate a tendency to abortion61; and on one of my plants the first-formed tendrils were sometimes simple, that is, were not divided into three toes. We are thus naturally led to the three following species with undivided tendrils

Bignonia speciosa. — The young shoots revolve irregularly, making narrow ellipses, spires62 or circles, at rates varying from 3 hrs. 30 m. to 4 hrs. 40 m.; but they show no tendency to twine. Whilst the plant is young and does not require a support, tendrils are not developed. Those borne by a moderately young plant were five inches in length. They revolve spontaneously, as do the short and non-sensitive petioles. When rubbed, they slowly bend to the rubbed side and subsequently straighten themselves; but they are not highly sensitive. There is something strange in their behaviour: I repeatedly placed close to them, thick and thin, rough and smooth sticks and posts, as well as string suspended vertically63, but none of these objects were well seized. After clasping an upright stick, they repeatedly loosed it again, and often would not seize it at all, or their extremities did not coil closely round. I have observed hundreds of tendrils belonging to various Cucurbitaceous, Passifloraceous, and Leguminous plants, and never saw one behave in this manner. When, however, my plant had grown to a height of eight or nine feet, the tendrils acted much better. They now seized a thin, upright stick horizontally, that is, at a point on their own level, and not some way up the stick as in the case of all the previous species. Nevertheless, the non-twining stem was enabled by this means to ascend the stick.

The extremity of the tendril is almost straight and sharp. The whole terminal portion exhibits a singular habit, which in an animal would be called an instinct; for it continually searches for any little crevice1 or hole into which to insert itself. I had two young plants; and, after having observed this habit, I placed near them posts, which had been bored by beetles64, or had become fissured66 by drying. The tendrils, by their own movement and by that of the internodes, slowly travelled over the surface of the wood, and when the apex67 came to a hole or fissure65 it inserted itself; in order to effect this the extremity for a length of half or quarter of an inch, would often bend itself at right angles to the basal part. I have watched this process between twenty and thirty times. The same tendril would frequently withdraw from one hole and insert its point into a second hole. I have also seen a tendril keep its point, in one case for 20 hrs. and in another for 36 hrs., in a minute hole, and then withdraw it. Whilst the point is thus temporarily inserted, the opposite tendril goes on revolving.

The whole length of a tendril often fits itself closely to any surface of wood with which it has come into contact; and I have observed one bent68 at right angles, from having entered a wide and deep fissure, with its apex abruptly69 re-bent and inserted into a minute lateral hole. After a tendril has clasped a stick, it contracts spirally; if it remains unattached it hangs straight downwards. If it has merely adapted itself to the inequalities of a thick post, though it has clasped nothing, or if it has inserted its apex into some little fissure, this stimulus70 suffices to induce spiral contraction; but the contraction always draws the tendril away from the post. So that in every case these movements, which seem so nicely adapted for some purpose, were useless. On one occasion, however, the tip became permanently71 jammed into a narrow fissure. I fully expected, from the analogy of B. capreolata and B. littoralis, that the tips would have been developed into adhesive discs; but I could never detect even a trace of this process. There is therefore at present something unintelligible72 about the habits of this plant.

Bignonia picta. — This species closely resembles the last in the structure and movements of its tendrils. I also casually73 examined a fine growing plant of the allied B. Lindleyi, and this apparently behaved in all respects in the same manner.

Bignonia capreolata. — We now come to a species having tendrils of a different type; but first for the internodes. A young shoot made three large revolutions, following the sun, at an average rate of 2 hrs. 23 m. The stem is thin and flexible, and I have seen one make four regular spiral turns round a thin upright stick, ascending of course from right to left, and therefore in a reversed direction compared with the before described species. Afterwards, from the interference of the tendrils, it ascended either straight up the stick or in an irregular spire. The tendrils are in some respects highly remarkable. In a young plant they were about 2.5 inches in length and much branched, the five chief branches apparently representing two pairs of leaflets and a terminal one. Each branch is, however, bifid or more commonly trifid towards the extremity, with the points blunt yet distinctly hooked. A tendril bends to any side which is lightly rubbed, and subsequently becomes straight again; but a loop of thread weighing 0.25th of a grain produced no effect. On two occasions the terminal branches became slightly curved in 10 m. after they had touched a stick; and in 30 m. the tips were curled quite round it. The basal part is less sensitive. The tendrils revolved75 in an apparently capricious manner, sometimes very slightly or not at all; at other times they described large regular ellipses. I could detect no spontaneous movement in the petioles of the leaves.

Whilst the tendrils are revolving more or less regularly, another remarkable movement takes place, namely, a slow inclination76 from the light towards the darkest side of the house. I repeatedly changed the position of my plants, and some little time after the revolving movement had ceased, the successively formed tendrils always ended by pointing to the darkest side. When I placed a thick post near a tendril, between it and the light, the tendril pointed77 in that direction. In two instances a pair of leaves stood so that one of the two tendrils was directed towards the light and the other to the darkest side of the house; the latter did not move, but the opposite one bent itself first upwards and then right over its fellow, so that the two became parallel, one above the other, both pointing to the dark: I then turned the plant half round; and the tendril which had turned over recovered its original position, and the opposite one which had not before moved, now turned over to the dark side. Lastly, on another plant, three pairs of tendrils were produced at the same time by three shoots, and all happened to be differently directed: I placed the pot in a box open only on one side, and obliquely78 facing the light; in two days all six tendrils pointed with unerring truth to the darkest corner of the box, though to do this each had to bend in a different manner. Six wind-vanes could not have more truly shown the direction of the wind, than did these branched tendrils the course of the stream of light which entered the box. I left these tendrils undisturbed for above 24 hrs., and then turned the pot half round; but they had now lost their power of movement, and could not any longer avoid the light.

When a tendril has not succeeded in clasping a support, either through its own revolving movement or that of the shoot, or by turning towards any object which intercepts79 the light, it bends vertically downwards and then towards its own stem, which it seizes together with the supporting stick, if there be one. A little aid is thus given in keeping the stem secure. If the tendril seizes nothing, it does not contract spirally, but soon withers80 away and drops off. If it seizes an object, all the branches contract spirally.

I have stated that after a tendril has come into contact with a stick, it bends round it in about half an hour; but I repeatedly observed, as in the case of B. speciosa and its allies, that it often again loosed the stick; sometimes seizing and loosing the same stick three or four times. Knowing that the tendrils avoided the light, I gave them a glass tube blackened within, and a well-blackened zinc81 plate: the branches curled round the tube and abruptly bent themselves round the edges of the zinc plate; but they soon recoiled82 from these objects with what I can only call disgust, and straightened themselves. I then placed a post with extremely rugged83 bark close to a pair of tendrils; twice they touched it for an hour or two, and twice they withdrew; at last one of the hooked extremities curled round and firmly seized an excessively minute projecting point of bark, and then the other branches spread themselves out, following with accuracy every inequality of the surface. I afterwards placed near the plant a post without bark but much fissured, and the points of the tendrils crawled into all the crevices in a beautiful manner. To my surprise, I observed that the tips of the immature tendrils, with the branches not yet fully separated, likewise crawled just like roots into the minutest crevices. In two or three days after the tips had thus crawled into the crevices, or after their hooked ends had seized minute points, the final process, now to be described, commenced.

This process I discovered by having accidentally left a piece of wool near a tendril; and this led me to bind84 a quantity of flax, moss85, and wool loosely round sticks, and to place them near tendrils. The wool must not be dyed, for these tendrils are excessively sensitive to some poisons. The hooked points soon caught hold of the fibres, even loosely floating fibres, and now there was no recoiling86; on the contrary, the excitement caused the hooks to penetrate87 the fibrous mass and to curl inwards, so that each hook caught firmly one or two fibres, or a small bundle of them. The tips and the inner surfaces of the hooks now began to swell88, and in two or three days were visibly enlarged. After a few more days the hooks were converted into whitish, irregular balls, rather above the 0.05th of an inch (1.27 mm.) in diameter, formed of coarse cellular tissue, which sometimes wholly enveloped89 and concealed91 the hooks themselves. The surfaces of these balls secrete92 some viscid resinous93 matter, to which the fibres of the flax, &c., adhere. When a fibre has become fastened to the surface, the cellular tissue does not grow directly beneath it, but continues to grow closely on each side; so that when several adjoining fibres, though excessively thin, were caught, so many crests94 of cellular matter, each not as thick as a human hair, grew up between them, and these, arching over on both sides, adhered firmly together. As the whole surface of the ball continues to grow, fresh fibres adhere and are afterwards enveloped; so that I have seen a little ball with between fifty and sixty fibres of flax crossing it at various angles and all embedded95 more or less deeply. Every gradation in the process could be followed — some fibres merely sticking to the surface, others lying in more or less deep furrows96, or deeply embedded, or passing through the very centre of the cellular ball. The embedded fibres are so closely clasped that they cannot be withdrawn97. The outgrowing99 tissue has so strong a tendency to unite, that two balls produced by distinct tendrils sometimes unite and grow into a single one.

On one occasion, when a tendril had curled round a stick, half an inch in diameter, an adhesive disc was formed; but this does not generally occur in the case of smooth sticks or posts. If, however, the tip catches a minute projecting point, the other branches form discs, especially if they find crevices to crawl into. The tendrils failed to attach themselves to a brick wall.

I infer from the adherence100 of the fibres to the discs or balls, that these secrete some resinous adhesive matter; and more especially from such fibres becoming loose if immersed in sulphuric ether. This fluid likewise removes small, brown, glistening101 points which can generally be seen on the surfaces of the older discs. If the hooked extremities of the tendrils do not touch anything, discs, as far as I have seen, are never formed; 26 but temporary contact during a moderate time suffices to cause their development. I have seen eight discs formed on the same tendril. After their development the tendrils contract spirally, and become woody and very strong. A tendril in this state supported nearly seven ounces, and would apparently have supported a considerably greater weight, had not the fibres of flax to which the discs were attached yielded.

From the facts now given, we may infer that though the tendrils of this Bignonia can occasionally adhere to smooth cylindrical102 sticks and often to rugged bark, yet that they are specially30 adapted to climb trees clothed with lichens103, mosses104, or other such productions; and I hear from Professor Asa Gray that the Polypodium incanum abounds105 on the forest-trees in the districts of North America where this species of Bignonia grows. Finally, I may remark how singular a fact it is that a leaf should be metamorphosed into a branched organ which turns from the light, and which can by its extremities either crawl like roots into crevices, or seize hold of minute projecting points, these extremities afterwards forming cellular outgrowths which secrete an adhesive cement, and then envelop90 by their continued growth the finest fibres.

Eccremocarpus scaber (Bignoniaceae). — Plants, though growing pretty well in my green-house, showed no spontaneous movements in their shoots or tendrils; but when removed to the hot-house, the young internodes revolved at rates varying from 3 hrs. 15 m. to 1 hr. 13 m. One large circle was swept at this latter unusually quick rate; but generally the circles or ellipses were small, and sometimes the course pursued was quite irregular. An internode, after making several revolutions, sometimes stood still for 12 hrs. or 18 hrs., and then recommenced revolving. Such strongly marked interruptions in the movements of the internodes I have observed in hardly any other plant.

The leaves bear four leaflets, themselves subdivided106, and terminate in much-branched tendrils. The main petiole of the leaf, whilst young, moves spontaneously, and follows nearly the same irregular course and at about the same rate as the internodes. The movement to and from the stem is the most conspicuous107, and I have seen the chord of a curved petiole which formed an angle of 59 degrees with the stem, in an hour afterwards making an angle of 106 degrees. The two opposite petioles do not move together, and one is sometimes so much raised as to stand close to the stem, whilst the other is not far from horizontal. The basal part of the petiole moves less than the distal part. The tendrils, besides being carried by the moving petioles and internodes, themselves move spontaneously; and the opposite tendrils occasionally move in opposite directions. By these combined movements of the young internodes, petioles, and tendrils, a considerable space is swept in search of a support.

In young plants the tendrils are about three inches in length: they bear two lateral and two terminal branches; and each branch bifurcates108 twice, with the tips terminating in blunt double hooks, having both points directed to the same side. All the branches are sensitive on all sides; and after being lightly rubbed, or after coming into contact with a stick, bend in about 10 m. One which had become curved in 10 m. after a light rub, continued bending for between 3 hrs. and 4 hrs., and became straight again in 8 hrs. or 9 hrs. Tendrils, which have caught nothing, ultimately contract into an irregular spire, as they likewise do, only much more quickly, after clasping a support. In both cases the main petiole bearing the leaflets, which is at first straight and inclined a little upwards, moves downwards, with the middle part bent abruptly into a right angle; but this is seen in E. miniatus more plainly than in E. scaber. The tendrils in this genus act in some respects like those of Bignonia capreolata; but the whole does not move from the light, nor do the hooked tips become enlarged into cellular discs. After the tendrils have come into contact with a moderately thick cylindrical stick or with rugged bark, the several branches may be seen slowly to lift themselves up, change their positions, and again come into contact with the supporting surface. The object of these movements is to bring the double-hooks at the extremities of the branches, which naturally face in all directions, into contact with the wood. I have watched a tendril, half of which had bent itself at right angles round the sharp corner of a square post, neatly110 bring every single hook into contact with both rectangular surfaces. The appearance suggested the belief, that though the whole tendril is not sensitive to light, yet that the tips are so, and that they turn and twist themselves towards any dark surface. Ultimately the branches arrange themselves very neatly to all the irregularities of the most rugged bark, so that they resemble in their irregular course a river with its branches, as engraved111 on a map. But when a tendril has wound round a rather thick stick, the subsequent spiral contraction generally draws it away and spoils the neat arrangement. So it is, but not in quite so marked a manner, when a tendril has spread itself over a large, nearly flat surface of rugged bark. We may therefore conclude that these tendrils are not perfectly adapted to seize moderately thick sticks or rugged bark. If a thin stick or twig is placed near a tendril, the terminal branches wind quite round it, and then seize their own lower branches or the main stem. The stick is thus firmly, but not neatly, grasped. What the tendrils are really adapted for, appears to be such objects as the thin culms of certain grasses, or the long flexible bristles112 of a brush, or thin rigid113 leaves such as those of the Asparagus, all of which they seize in an admirable manner. This is due to the extremities of the branches close to the little hooks being extremely sensitive to a touch from the thinnest object, which they consequently curl round and clasp. When a small brush, for instance, was placed near a tendril, the tips of each sub-branch seized one, two, or three of the bristles; and then the spiral contraction of the several branches brought all these little parcels close together, so that thirty or forty bristles were drawn98 into a single bundle, which afforded an excellent support.

POLEMONIACEAE. — Cobaea scandens. — This is an excellently constructed climber. The tendrils on a fine plant were eleven inches long, with the petiole bearing two pairs of leaflets, only two and a half inches in length. They revolve more rapidly and vigorously than those of any other tendril-bearer observed by me, with the exception of one kind of Passiflora. Three large, nearly circular sweeps, directed against the sun were completed, each in 1 hr. 15 m.; and two other circles in 1 hr. 20 m. and 1 hr. 23 m. Sometimes a tendril travels in a much inclined position, and sometimes nearly upright. The lower part moves but little and the petiole not at all; nor do the internodes revolve; so that here we have the tendril alone moving. On the other hand, with most of the species of Bignonia and the Eccremocarpus, the internodes, tendrils, and petioles all revolved. The long, straight, tapering114 main stem of the tendril of the Cobaea bears alternate branches; and each branch is several times divided, with the finer branches as thin as very thin bristles and extremely flexible, so that they are blown about by a breath of air; yet they are strong and highly elastic115. The extremity of each branch is a little flattened116, and terminates in a minute double (though sometimes single) hook, formed of a hard, translucent117, woody substance, and as sharp as the finest needle. On a tendril which was eleven inches long I counted ninety-four of these beautifully constructed little hooks. They readily catch soft wood, or gloves, or the skin of the naked hand. With the exception of these hardened hooks, and of the basal part of the central stem, every part of every branchlet is highly sensitive on all sides to a slight touch, and bends in a few minutes towards the touched side. By lightly rubbing several sub-branches on opposite sides, the whole tendril rapidly assumed an extraordinarily118 crooked119 shape. These movements from contact do not interfere74 with the ordinary revolving movement. The branches, after becoming greatly curved from being touched, straighten themselves at a quicker rate than in almost any other tendril seen by me, namely, in between half an hour and an hour. After the tendril has caught any object, spiral contraction likewise begins after an unusually short interval120 of time, namely, in about twelve hours.

Before the tendril is mature, the terminal branchlets cohere121, and the hooks are curled closely inwards. At this period no part is sensitive to a touch; but as soon as the branches diverge and the hooks stand out, full sensitiveness is acquired. It is a singular circumstance that immature tendrils revolve at their full velocity122 before they become sensitive, but in a useless manner, as in this state they can catch nothing. This want of perfect coadaptation, though only for a short time, between the structure and the functions of a climbing-plant is a rare event. A tendril, as soon as it is ready to act, stands, together with the supporting petiole, vertically upwards. The leaflets borne by the petiole are at this time quite small, and the extremity of the growing stem is bent to one side so as to be out of the way of the revolving tendril, which sweeps large circles directly over head. The tendrils thus revolve in a position well adapted for catching objects standing123 above; and by this means the ascent124 of the plant is favoured. If no object is caught, the leaf with its tendril bends downwards and ultimately assumes a horizontal position. An open space is thus left for the next succeeding and younger tendril to stand vertically upwards and to revolve freely. As soon as an old tendril bends downwards, it loses all power of movement, and contracts spirally into an entangled125 mass. Although the tendrils revolve with unusual rapidity, the movement lasts for only a short time. In a plant placed in the hot-house and growing vigorously, a tendril revolved for not longer than 36 hours, counting from the period when it first became sensitive; but during this period it probably made at least 27 revolutions.

When a revolving tendril strikes against a stick, the branches quickly bend round and clasp it. The little hooks here play an important part, as they prevent the branches from being dragged away by the rapid revolving movement, before they have had time to clasp the stick securely. This is especially the case when only the extremity of a branch has caught hold of a support. As soon as a tendril has bent a smooth stick or a thick rugged post, or has come into contact with planed wood (for it can adhere temporarily even to so smooth a surface as this), the same peculiar126 movements may be observed as those described under Bignonia capreolata and Eccremocarpus. The branches repeatedly lift themselves up and down; those which have their hooks already directed downwards remaining in this position and securing the tendril, whilst the others twist about until they succeed in arranging themselves in conformity127 with every irregularity of the surface, and in bringing their hooks into contact with the wood. The use of the hooks was well shown by giving the tendrils tubes and slips of glass to catch; for these, though temporarily seized, were invariably lost, either during the re-arrangement of the branches or ultimately when spiral contraction ensued.

The perfect manner in which the branches arranged themselves, creeping like rootlets over every inequality of the surface and into any deep crevice, is a pretty sight; for it is perhaps more effectually performed by this than by any other species. The action is certainly more conspicuous, as the upper surfaces of the main stem, as well as of every branch to the extreme hooks, are angular and green, whilst the lower surfaces are rounded and purple. I was led to infer, as in former cases, that a less amount of light guided these movements of the branches of the tendrils. I made many trials with black and white cards and glass tubes to prove it, but failed from various causes; yet these trials countenanced128 the belief. As a tendril consists of a leaf split into numerous segments, there is nothing surprising in all the segments turning their upper surfaces towards the light, as soon as the tendril is caught and the revolving movement is arrested. But this will not account for the whole movement, for the segments actually bend or curve to the dark side besides turning round on their axes so that their upper surfaces may face the light.

When the Cobaea grows in the open air, the wind must aid the extremely flexible tendrils in seizing a support, for I found that a mere38 breath sufficed to cause the extreme branches to catch hold by their hooks of twigs, which they could not have reached by the revolving movement. It might have been thought that a tendril, thus hooked by the extremity of a single branch, could not have fairly grasped its support. But several times I watched cases like the following: tendril caught a thin stick by the hooks of one of its two extreme branches; though thus held by the tip, it still tried to revolve, bowing itself to all sides, and by this movement the other extreme branch soon caught the stick. The first branch then loosed itself, and, arranging its hooks, again caught hold. After a time, from the continued movement of the tendril, the hooks of a third branch caught hold. No other branches, as the tendril then stood, could possibly have touched the stick. But before long the upper part of the main stem began to contract into an open spire. It thus dragged the shoot which bore the tendril towards the stick; and as the tendril continually tried to revolve, a fourth branch was brought into contact. And lastly, from the spiral contraction travelling down both the main stem and the branches, all of them, one after another, were ultimately brought into contact with the stick. They then wound themselves round it and round one another, until the whole tendril was tied together in an inextricable knot. The tendrils, though at first quite flexible, after having clasped a support for a time, become more rigid and stronger than they were at first. Thus the plant is secured to its support in a perfect manner.

LEGUMINOSAE. — Pisum sativum. — The common pea was the subject of a valuable memoir129 by Dutrochet, 27 who discovered that the internodes and tendrils revolve in ellipses. The ellipses are generally very narrow, but sometimes approach to circles. I several times observed that the longer axis slowly changed its direction, which is of importance, as the tendril thus sweeps a wider space. Owing to this change of direction, and likewise to the movement of the stem towards the light, the successive irregular ellipses generally form an irregular spire. I have thought it worth while to annex130 a tracing of the course pursued by the upper internode (the movement of the tendril being neglected) of a young plant from 8.40 A.M. to 9.15 P.M. The course was traced on a hemispherical glass placed over the plant, and the dots with figures give the hours of observation; each dot being joined by a straight line. No doubt all the lines would have been curvilinear if the course had been observed at much shorter intervals131. The extremity of the petiole, from which the young tendril arose, was two inches from the glass, so that if a pencil two inches in length could have been affixed132 to the petiole, it would have traced the annexed133 figure on the under side of the glass; but it must be remembered that the figure is reduced by one-half. Neglecting the first great sweep towards the light from the figure 1 to 2, the end of the petiole swept a space 4 inches across in one direction, and 3 inches in another. As a full-grown tendril is considerably above two inches in length, and as the tendril itself bends and revolves134 in harmony with the internode, a considerably wider space is swept than is here represented on a reduced scale. Dutrochet observed the completion of an ellipse in 1 hr. 20 m.; and I saw one completed in 1 hr. 30 m. The direction followed is variable, either with or against the sun.

Dutrochet asserts that the petioles of the leaves spontaneously revolve, as well as the young internodes and tendrils; but he does not say that he secured the internodes; when this was done, I could never detect any movement in the petiole, except to and from the light.

The tendrils, on the other hand, when the internodes and petioles are secured, describe irregular spires or regular ellipses, exactly like those made by the internodes. A young tendril, only 1.125 of an inch in length, revolved. Dutrochet has shown that when a plant is placed in a room, so that the light enters laterally135, the internodes travel much quicker to the light than from it: on the other hand, he asserts that the tendril itself moves from the light towards the dark side of the room. With due deference136 to this great observer, I think he was mistaken, owing to his not having secured the internodes. I took a young plant with highly sensitive tendrils, and tied the petiole so that the tendril alone could move; it completed a perfect ellipse in 1 hr. 30 m.; I then turned the plant partly round, but this made no change in the direction of the succeeding ellipse. The next day I watched a plant similarly secured until the tendril (which was highly sensitive) made an ellipse in a line exactly to and from the light; the movement was so great that the tendril at the two ends of its elliptical course bent itself a little beneath the horizon, thus travelling more than 180 degrees; but the curvature was fully as great towards the light as towards the dark side of the room. I believe Dutrochet was misled by not having secured the internodes, and by having observed a plant of which the internodes and tendrils no longer curved in harmony together, owing to inequality of age.

Dutrochet made no observations on the sensitiveness of the tendrils. These, whilst young and about an inch in length with the leaflets on the petiole only partially137 expanded, are highly sensitive; a single light touch with a twig on the inferior or concave surface near the tip caused them to bend quickly, as did occasionally a loop of thread weighing one-seventh of a grain (9.25 mg.). The upper or convex surface is barely or not at all sensitive. Tendrils, after bending from a touch, straighten themselves in about two hours, and are then ready to act again. As soon as they begin to grow old, the extremities of their two or three pairs of branches become hooked, and they then appear to form an excellent grappling instrument; but this is not the case. For at this period they have generally quite lost their sensitiveness; and when hooked on to twigs, some were not at all affected138, and others required from 18 hrs. to 24 hrs. before clasping such twigs; nevertheless, they were able to utilise the last vestige139 of irritability owing to their extremities being hooked. Ultimately the lateral branches contract spirally, but not the middle or main stem.

Lathyrus aphaca. — This plant is destitute140 of leaves, except during a very early age, these being replaced by tendrils, and the leaves themselves by large stipules. It might therefore have been expected that the tendrils would have been highly organized, but this is not so. They are moderately long, thin, and unbranched, with their tips slightly curved. Whilst young they are sensitive on all sides, but chiefly on the concave side of the extremity. They have no spontaneous revolving power, but are at first inclined upwards at an angle of about 45 degrees, then move into a horizontal position, and ultimately bend downwards. The young internodes, on the other hand, revolve in ellipses, and carry with them the tendrils. Two ellipses were completed, each in nearly 5 hrs.; their longer axes were directed at about an angle of 45 degrees to the axis of the previously141 made ellipse.

Lathyrus grandiflorus. — The plants observed were young and not growing vigorously, yet sufficiently142 so, I think, for my observations to be trusted. If so, we have the rare case of neither internodes nor tendrils revolving. The tendrils of vigorous plants are above 4 inches in length, and are often twice divided into three branches; the tips are curved and are sensitive on their concave sides; the lower part of the central stem is hardly at all sensitive. Hence this plant appears to climb simply by its tendrils being brought, through the growth of the stem, or more efficiently143 by the wind, into contact with surrounding objects, which they then clasp. I may add that the tendrils, or the internodes, or both, of Vicia sativa revolve.

COMPOSITAE. — Mutisia clematis. — The immense family of the Compositae is well known to include very few climbing plants. We have seen in the Table in the first chapter that Mikania scandens is a regular twiner10, and F. Muller informs me that in S. Brazil there is another species which is a leaf-climber. Mutisia is the only genus in the family, as far as I can learn, which bears tendrils: it is therefore interesting to find that these, though rather less metamorphosed from their primordial144 foliar condition than are most other tendrils, yet display all the ordinary characteristic movements, both those that are spontaneous and those which are excited by contact.

The long leaf bears seven or eight alternate leaflets, and terminates in a tendril which, in a plant of considerable size, was 5 inches in length. It consists generally of three branches; and these, although much elongated, evidently represent the petioles and midribs of three leaflets; for they closely resemble the same parts in an ordinary leaf, in being rectangular on the upper surface, furrowed145, and edged with green. Moreover, the green edging of the tendrils of young plants sometimes expands into a narrow lamina or blade. Each branch is curved a little downwards, and is slightly hooked at the extremity.

A young upper internode revolved, judging from three revolutions, at an average rate of 1 hr. 38 m.; it swept ellipses with the longer axes directed at right angles to one another; but the plant, apparently, cannot twine. The petioles and the tendrils are both in constant movement. But their movement is slower and much less regularly elliptical than that of the internodes. They appear to be much affected by the light, for the whole leaf usually sinks down during the night and rises during the day, moving, also, during the day in a crooked course to the west. The tip of the tendril is highly sensitive on the lower surface; and one which was just touched with a twig became perceptibly curved in 3 m., and another in 5 m.; the upper surface is not at all sensitive; the sides are moderately sensitive, so that two branches which were rubbed on their inner sides converged146 and crossed each other. The petiole of the leaf and the lower parts of the tendril, halfway147 between the upper leaflet and the lowest branch, are not sensitive. A tendril after curling from a touch became straight again in about 6 hrs., and was ready to re-act; but one that had been so roughly rubbed as to have coiled into a helix did not become perfectly straight until after 13 hrs. The tendrils retain their sensibility to an unusually late age; for one borne by a leaf with five or six fully developed leaves above, was still active. If a tendril catches nothing, after a considerable interval of time the tips of the branches curl a little inwards; but if it clasps some object, the whole contracts spirally.

SMILACEAE. — Smilax aspera, var. maculata. — Aug. St.-Hilaire 28 considers that the tendrils, which rise in pairs from the petiole, are modified lateral leaflets; but Mohl (p. 41) ranks them as modified stipules. These tendrils are from 1.5 to 1.75 inches in length, are thin, and have slightly curved, pointed extremities. They diverge a little from each other, and stand at first nearly upright. When lightly rubbed on either side, they slowly bend to that side, and subsequently become straight again. The back or convex side when placed in contact with a stick became just perceptibly curved in 1 hr. 20 m., but did not completely surround it until 48 hrs. had elapsed; the concave side of another became considerably curved in 2 hrs. and clasped a stick in 5 hrs. As the pairs of tendrils grow old, one tendril diverges148 more and more from the other, and both slowly bend backwards149 and downwards, so that after a time they project on the opposite side of the stem to that from which they arise. They then still retain their sensitiveness, and can clasp a support placed BEHIND the stem. Owing to this power, the plant is able to ascend a thin upright stick. Ultimately the two tendrils belonging to the same petiole, if they do not come into contact with any object, loosely cross each other behind the stem, as at B, in fig. 7. This movement of the tendrils towards and round the stem is, to a certain extent, guided by their avoidance of the light; for when a plant stood so that one of the two tendrils was compelled in thus slowly moving to travel towards the light, and the other from the light, the latter always moved, as I repeatedly observed, more quickly than its fellow. The tendrils do not contract spirally in any case. Their chance of finding a support depends on the growth of the plant, on the wind, and on their own slow backward and downward movement, which, as we have just seen, is guided, to a certain extent, by the avoidance of the light; for neither the internodes nor the tendrils have any proper revolving movement. From this latter circumstance, from the slow movements of the tendrils after contact (though their sensitiveness is retained for an unusual length of time), from their simple structure and shortness, this plant is a less perfect climber than any other tendril-bearing species observed by me. The plant whilst young and only a few inches in height, does not produce any tendrils; and considering that it grows to only about 8 feet in height, that the stem is zigzag150 and is furnished, as well as the petioles, with spines, it is surprising that it should be provided with tendrils, comparatively inefficient though these are. The plant might have been left, one would have thought, to climb by the aid of its spines alone, like our brambles. As, however, it belongs to a genus, some of the species of which are furnished with much longer tendrils, we may suspect that it possesses these organs solely151 from being descended152 from progenitors153 more highly organized in this respect.

FUMARIACEAE. — Corydalis claviculata. — According to Mohl (p. 43), the extremities of the branched stem, as well as the leaves, are converted into tendrils. In the specimens154 examined by me all the tendrils were certainly foliar, and it is hardly credible156 that the same plant should produce tendrils of a widely different homological nature. Nevertheless, from this statement by Mohl, I have ranked this species amongst the tendril-bearers; if classed exclusively by its foliar tendrils, it would be doubtful whether it ought not to have been placed amongst the leaf-climbers, with its allies, Fumaria and Adlumia. A large majority of its so-called tendrils still bear leaflets, though excessively reduced in size; but some few of them may properly be designated as tendrils, for they are completely destitute of laminae or blades. Consequently, we here behold157 a plant in an actual state of transition from a leaf-climber to a tendril-bearer. Whilst the plant is rather young, only the outer leaves, but when full-grown all the leaves, have their extremities converted into more or less perfect tendrils. I have examined specimens from one locality alone, viz. Hampshire; and it is not improbable that plants growing under different conditions might have their leaves a little more or less changed into true tendrils.

Whilst the plant is quite young, the first-formed leaves are not modified in any way, but those next formed have their terminal leaflets reduced in size, and soon all the leaves assume the structure represented in the following drawing. This leaf bore nine leaflets; the lower ones being much subdivided. The terminal portion of the petiole, about 1.5 inch in length (above the leaflet f), is thinner and more elongated than the lower part, and may be considered as the tendril. The leaflets borne by this part are greatly reduced in size, being, on an average, about the tenth of an inch in length and very narrow; one small leaflet measured one-twelfth of an inch in length and one-seventy-fifth in breadth (2.116 mm. and 0.339 mm.), so that it was almost microscopically158 minute. All the reduced leaflets have branching nerves, and terminate in little spines, like those of the fully developed leaflets. Every gradation could be traced, until we come to branchlets (as a and d in the figure) which show no vestige of a lamina or blade. Occasionally all the terminal branchlets of the petiole are in this condition, and we then have a true tendril.

The several terminal branches of the petiole bearing the much reduced leaflets (a, b, c, d) are highly sensitive, for a loop of thread weighing only the one-sixteenth of a grain (4.05 mg.) caused them to become greatly curved in under 4 hrs. When the loop was removed, the petioles straightened themselves in about the same time. The petiole (e) was rather less sensitive; and in another specimen155, in which the corresponding petiole bore rather larger leaflets, a loop of thread weighing one-eighth of a grain did not cause curvature until 18 hrs. had elapsed. Loops of thread weighing one-fourth of a grain, left suspended on the lower petioles (f to l) during several days, produced no effect. Yet the three petioles f, g, and h were not quite insensible, for when left in contact with a stick for a day or two they slowly curled round it. Thus the sensibility of the petiole gradually diminishes from the tendril-like extremity to the base. The internodes of the stem are not at all sensitive, which makes Mohl’s statement that they are sometimes converted into tendrils the more surprising, not to say improbable.

The whole leaf, whilst young and sensitive, stands almost vertically upwards, as we have seen to be the case with many tendrils. It is in continual movement, and one that I observed swept at an average rate of about 2 hrs. for each revolution, large, though irregular, ellipses, which were sometimes narrow, sometimes broad, with their longer axes directed to different points of the compass. The young internodes, likewise revolved irregularly in ellipses or spires; so that by these combined movements a considerable space was swept for a support. If the terminal and attenuated159 portion of a petiole fails to seize any object, it ultimately bends downwards and inwards, and soon loses all irritability and power of movement. This bending down differs much in nature from that which occurs with the extremities of the young leaves in many species of Clematis; for these, when thus bent downwards or hooked, first acquire their full degree of sensitiveness.

Dicentra thalictrifolia. — In this allied plant the metamorphosis of the terminal leaflets is complete, and they are converted into perfect tendrils. Whilst the plant is young, the tendrils appear like modified branches, and a distinguished160 botanist8 thought that they were of this nature; but in a full-grown plant there can be no doubt, as I am assured by Dr. Hooker, that they are modified leaves. When of full size, they are above 5 inches in length; they bifurcate109 twice, thrice, or even four times; their extremities are hooked and blunt. All the branches of the tendrils are sensitive on all sides, but the basal portion of the main stem is only slightly so. The terminal branches when lightly rubbed with a twig became curved in the course of from 30 m. to 42 m., and straightened themselves in between 10 hrs. and 20 hrs. A loop of thread weighing one-eighth of a grain plainly caused the thinner branches to bend, as did occasionally a loop weighing one-sixteenth of a grain; but this latter weight, though left suspended, was not sufficient to cause a permanent flexure. The whole leaf with its tendril, as well as the young upper internodes, revolves vigorously and quickly, though irregularly, and thus sweeps a wide space. The figure traced on a bell-glass was either an irregular spire or a zigzag line. The nearest approach to an ellipse was an elongated figure of 8, with one end a little open, and this was completed in 1 hr. 53 m. During a period of 6 hrs. 17 m. another shoot made a complex figure, apparently representing three and a half ellipses. When the lower part of the petiole bearing the leaflets was securely fastened, the tendril itself described similar but much smaller figures.

This species climbs well. The tendrils after clasping a stick become thicker and more rigid; but the blunt hooks do not turn and adapt themselves to the supporting surface, as is done in so perfect a manner by some Bignoniaceae and Cobaea. The tendrils of young plants, two or three feet in height, are only half the length of those borne by the same plant when grown taller, and they do not contract spirally after clasping a support, but only become slightly flexuous. Full-sized tendrils, on the other hand, contract spirally, with the exception of the thick basal portion. Tendrils which have caught nothing simply bend downwards and inwards, like the extremities of the leaves of the Corydalis claviculata. But in all cases the petiole after a time is angularly and abruptly bent downwards like that of Eccremocarpus.

点击收听单词发音收听单词发音  

1 crevice pokzO     
n.(岩石、墙等)裂缝;缺口
参考例句:
  • I saw a plant growing out of a crevice in the wall.我看到墙缝里长出一棵草来。
  • He edged the tool into the crevice.他把刀具插进裂缝里。
2 crevices 268603b2b5d88d8a9cc5258e16a1c2f8     
n.(尤指岩石的)裂缝,缺口( crevice的名词复数 )
参考例句:
  • It has bedded into the deepest crevices of the store. 它已钻进了店里最隐避的隙缝。 来自辞典例句
  • The wind whistled through the crevices in the rock. 风呼啸着吹过岩石的缝隙。 来自辞典例句
3 adhesive CyVzV     
n.粘合剂;adj.可粘着的,粘性的
参考例句:
  • You'll need a strong adhesive to mend that chair. 你需要一种粘性很强的东西来修理那把椅子。
  • Would you give me an adhesive stamp?请给我一枚带胶邮票好吗?
4 inefficient c76xm     
adj.效率低的,无效的
参考例句:
  • The inefficient operation cost the firm a lot of money.低效率的运作使该公司损失了许多钱。
  • Their communication systems are inefficient in the extreme.他们的通讯系统效率非常差。
5 filamentary 57a53e8c2abca8c58b60d9e9f02cdf00     
adj.细丝状的;细丝的;似丝的;单纤维的
参考例句:
  • U4 triode connected: Medium MU small mass filamentary heating structure. 三极管接法):中Mu小型灯丝结构。 来自互联网
  • Low MU Thoriated Tungsten filamentary heating structure. 低Mu敷钍灯丝结构。 来自互联网
6 spines 2e4ba52a0d6dac6ce45c445e5386653c     
n.脊柱( spine的名词复数 );脊椎;(动植物的)刺;书脊
参考例句:
  • Porcupines use their spines to protect themselves. 豪猪用身上的刺毛来自卫。
  • The cactus has spines. 仙人掌有刺。 来自《现代英汉综合大词典》
7 modification tEZxm     
n.修改,改进,缓和,减轻
参考例句:
  • The law,in its present form,is unjust;it needs modification.现行的法律是不公正的,它需要修改。
  • The design requires considerable modification.这个设计需要作大的修改。
8 botanist kRTyL     
n.植物学家
参考例句:
  • The botanist introduced a new species of plant to the region.那位植物学家向该地区引入了一种新植物。
  • I had never talked with a botanist before,and I found him fascinating.我从没有接触过植物学那一类的学者,我觉得他说话极有吸引力。
9 botanists 22548cbfc651e84a87843ff3505735d9     
n.植物学家,研究植物的人( botanist的名词复数 )
参考例句:
  • Botanists had some difficulty categorizing the newly found plant. 植物学家们不大容易确定这种新发现的植物的种类。 来自辞典例句
  • Botanists refer this flower to the rose family. 植物学家将这花归入蔷薇科。 来自辞典例句
10 twiner 32e43ae034a0fa1a261c7484a6a09f8c     
n.缠绕植物;搓绳机
参考例句:
11 twine vg6yC     
v.搓,织,编饰;(使)缠绕
参考例句:
  • He tied the parcel with twine.他用细绳捆包裹。
  • Their cardboard boxes were wrapped and tied neatly with waxed twine.他们的纸板盒用蜡线扎得整整齐齐。
12 remarkable 8Vbx6     
adj.显著的,异常的,非凡的,值得注意的
参考例句:
  • She has made remarkable headway in her writing skills.她在写作技巧方面有了长足进步。
  • These cars are remarkable for the quietness of their engines.这些汽车因发动机没有噪音而不同凡响。
13 allied iLtys     
adj.协约国的;同盟国的
参考例句:
  • Britain was allied with the United States many times in history.历史上英国曾多次与美国结盟。
  • Allied forces sustained heavy losses in the first few weeks of the campaign.同盟国在最初几周内遭受了巨大的损失。
14 vertical ZiywU     
adj.垂直的,顶点的,纵向的;n.垂直物,垂直的位置
参考例句:
  • The northern side of the mountain is almost vertical.这座山的北坡几乎是垂直的。
  • Vertical air motions are not measured by this system.垂直气流的运动不用这种系统来测量。
15 ascend avnzD     
vi.渐渐上升,升高;vt.攀登,登上
参考例句:
  • We watched the airplane ascend higher and higher.我们看着飞机逐渐升高。
  • We ascend in the order of time and of development.我们按时间和发展顺序向上溯。
16 ascending CyCzrc     
adj.上升的,向上的
参考例句:
  • Now draw or trace ten dinosaurs in ascending order of size.现在按照体型由小到大的顺序画出或是临摹出10只恐龙。
17 perfectly 8Mzxb     
adv.完美地,无可非议地,彻底地
参考例句:
  • The witnesses were each perfectly certain of what they said.证人们个个对自己所说的话十分肯定。
  • Everything that we're doing is all perfectly above board.我们做的每件事情都是光明正大的。
18 irritability oR0zn     
n.易怒
参考例句:
  • It was the almost furtive restlessness and irritability that had possessed him. 那是一种一直纠缠着他的隐秘的不安和烦恼。
  • All organisms have irritability while alive. 所有生物体活着时都有应激性。
19 ellipses 80016ca1ead584db2209b9bdd97c184f     
n.椭园,省略号;椭圆( ellipse的名词复数 );(语法结构上的)省略( ellipsis的名词复数 )
参考例句:
  • The planets move around the sun in ellipses. 各行星围绕太阳按椭圆形运转。 来自《简明英汉词典》
  • Summations are almost invariably indicated ellipses instead of the more prevalent sigma notation. 在表示“连加”的式子中,几乎一成不变地使用省略号来代替更为流行的“∑”符号。 来自辞典例句
20 apparently tMmyQ     
adv.显然地;表面上,似乎
参考例句:
  • An apparently blind alley leads suddenly into an open space.山穷水尽,豁然开朗。
  • He was apparently much surprised at the news.他对那个消息显然感到十分惊异。
21 revolve NBBzX     
vi.(使)旋转;循环出现
参考例句:
  • The planets revolve around the sun.行星绕着太阳运转。
  • The wheels began to revolve slowly.车轮开始慢慢转动。
22 twines af635617ae71a5ef270282ddb701a7ff     
n.盘绕( twine的名词复数 );麻线;捻;缠绕在一起的东西
参考例句:
  • The vine twines round the tree. 这藤盘绕在树干上。 来自《简明英汉词典》
  • A stream twines across the valley. 一条小溪蜿蜒流过山谷。 来自《简明英汉词典》
23 fig L74yI     
n.无花果(树)
参考例句:
  • The doctor finished the fig he had been eating and selected another.这位医生吃完了嘴里的无花果,又挑了一个。
  • You can't find a person who doesn't know fig in the United States.你找不到任何一个在美国的人不知道无花果的。
24 curiously 3v0zIc     
adv.有求知欲地;好问地;奇特地
参考例句:
  • He looked curiously at the people.他好奇地看着那些人。
  • He took long stealthy strides. His hands were curiously cold.他迈着悄没声息的大步。他的双手出奇地冷。
25 hind Cyoya     
adj.后面的,后部的
参考例句:
  • The animal is able to stand up on its hind limbs.这种动物能够用后肢站立。
  • Don't hind her in her studies.不要在学业上扯她后腿。
26 diverging d7d416587b95cf7081b2b1fd0a9002ea     
分开( diverge的现在分词 ); 偏离; 分歧; 分道扬镳
参考例句:
  • Plants had gradually evolved along diverging and converging pathways. 植物是沿着趋异和趋同两种途径逐渐演化的。
  • With member-country bond yields now diverging, 'it's a fragmented set of markets. 但随着成员国债券收益率之差扩大,市场已经分割开来。
27 downwards MsDxU     
adj./adv.向下的(地),下行的(地)
参考例句:
  • He lay face downwards on his bed.他脸向下伏在床上。
  • As the river flows downwards,it widens.这条河愈到下游愈宽。
28 upwards lj5wR     
adv.向上,在更高处...以上
参考例句:
  • The trend of prices is still upwards.物价的趋向是仍在上涨。
  • The smoke rose straight upwards.烟一直向上升。
29 lateral 83ey7     
adj.侧面的,旁边的
参考例句:
  • An airfoil that controls lateral motion.能够控制横向飞行的机翼。
  • Mr.Dawson walked into the court from a lateral door.道森先生从一个侧面的门走进法庭。
30 specially Hviwq     
adv.特定地;特殊地;明确地
参考例句:
  • They are specially packaged so that they stack easily.它们经过特别包装以便于堆放。
  • The machine was designed specially for demolishing old buildings.这种机器是专为拆毁旧楼房而设计的。
31 revolving 3jbzvd     
adj.旋转的,轮转式的;循环的v.(使)旋转( revolve的现在分词 );细想
参考例句:
  • The theatre has a revolving stage. 剧院有一个旋转舞台。
  • The company became a revolving-door workplace. 这家公司成了工作的中转站。
32 twigs 17ff1ed5da672aa443a4f6befce8e2cb     
细枝,嫩枝( twig的名词复数 )
参考例句:
  • Some birds build nests of twigs. 一些鸟用树枝筑巢。
  • Willow twigs are pliable. 柳条很软。
33 twig VK1zg     
n.小树枝,嫩枝;v.理解
参考例句:
  • He heard the sharp crack of a twig.他听到树枝清脆的断裂声。
  • The sharp sound of a twig snapping scared the badger away.细枝突然折断的刺耳声把獾惊跑了。
34 thicket So0wm     
n.灌木丛,树林
参考例句:
  • A thicket makes good cover for animals to hide in.丛林是动物的良好隐蔽处。
  • We were now at the margin of the thicket.我们现在已经来到了丛林的边缘。
35 incessantly AqLzav     
ad.不停地
参考例句:
  • The machines roar incessantly during the hours of daylight. 机器在白天隆隆地响个不停。
  • It rained incessantly for the whole two weeks. 雨不间断地下了整整两个星期。
36 spire SF3yo     
n.(教堂)尖顶,尖塔,高点
参考例句:
  • The church spire was struck by lightning.教堂的尖顶遭到了雷击。
  • They could just make out the spire of the church in the distance.他们只能辨认出远处教堂的尖塔。
37 fully Gfuzd     
adv.完全地,全部地,彻底地;充分地
参考例句:
  • The doctor asked me to breathe in,then to breathe out fully.医生让我先吸气,然后全部呼出。
  • They soon became fully integrated into the local community.他们很快就完全融入了当地人的圈子。
38 mere rC1xE     
adj.纯粹的;仅仅,只不过
参考例句:
  • That is a mere repetition of what you said before.那不过是重复了你以前讲的话。
  • It's a mere waste of time waiting any longer.再等下去纯粹是浪费时间。
39 wither dMVz1     
vt.使凋谢,使衰退,(用眼神气势等)使畏缩;vi.枯萎,衰退,消亡
参考例句:
  • She grows as a flower does-she will wither without sun.她象鲜花一样成长--没有太阳就会凋谢。
  • In autumn the leaves wither and fall off the trees.秋天,树叶枯萎并从树上落下来。
40 considerably 0YWyQ     
adv.极大地;相当大地;在很大程度上
参考例句:
  • The economic situation has changed considerably.经济形势已发生了相当大的变化。
  • The gap has narrowed considerably.分歧大大缩小了。
41 diverge FlTzZ     
v.分叉,分歧,离题,使...岔开,使转向
参考例句:
  • This is where our opinions diverge from each other.这就是我们意见产生分歧之处。
  • Don't diverge in your speech.发言不要离题。
42 irritable LRuzn     
adj.急躁的;过敏的;易怒的
参考例句:
  • He gets irritable when he's got toothache.他牙一疼就很容易发脾气。
  • Our teacher is an irritable old lady.She gets angry easily.我们的老师是位脾气急躁的老太太。她很容易生气。
43 ascends 70c31d4ff86cb70873a6a196fadac6b8     
v.上升,攀登( ascend的第三人称单数 )
参考例句:
  • The azygos vein ascends in the right paravertebral gutter. 奇静脉在右侧脊柱旁沟内上升。 来自辞典例句
  • The mortality curve ascends gradually to a plateau at age 65. 死亡曲线逐渐上升,到65岁时成平稳状态。 来自辞典例句
44 axis sdXyz     
n.轴,轴线,中心线;坐标轴,基准线
参考例句:
  • The earth's axis is the line between the North and South Poles.地轴是南北极之间的线。
  • The axis of a circle is its diameter.圆的轴线是其直径。
45 catching cwVztY     
adj.易传染的,有魅力的,迷人的,接住
参考例句:
  • There are those who think eczema is catching.有人就是认为湿疹会传染。
  • Enthusiasm is very catching.热情非常富有感染力。
46 contraction sn6yO     
n.缩略词,缩写式,害病
参考例句:
  • The contraction of this muscle raises the lower arm.肌肉的收缩使前臂抬起。
  • The forces of expansion are balanced by forces of contraction.扩张力和收缩力相互平衡。
47 immature Saaxj     
adj.未成熟的,发育未全的,未充分发展的
参考例句:
  • Tony seemed very shallow and immature.托尼看起来好像很肤浅,不夠成熟。
  • The birds were in immature plumage.这些鸟儿羽翅未全。
48 incapable w9ZxK     
adj.无能力的,不能做某事的
参考例句:
  • He would be incapable of committing such a cruel deed.他不会做出这么残忍的事。
  • Computers are incapable of creative thought.计算机不会创造性地思维。
49 flexibility vjPxb     
n.柔韧性,弹性,(光的)折射性,灵活性
参考例句:
  • Her great strength lies in her flexibility.她的优势在于她灵活变通。
  • The flexibility of a man's muscles will lessen as he becomes old.人老了肌肉的柔韧性将降低。
50 ascended ea3eb8c332a31fe6393293199b82c425     
v.上升,攀登( ascend的过去式和过去分词 )
参考例句:
  • He has ascended into heaven. 他已经升入了天堂。 来自《简明英汉词典》
  • The climbers slowly ascended the mountain. 爬山运动员慢慢地登上了这座山。 来自《简明英汉词典》
51 relatively bkqzS3     
adv.比较...地,相对地
参考例句:
  • The rabbit is a relatively recent introduction in Australia.兔子是相对较新引入澳大利亚的物种。
  • The operation was relatively painless.手术相对来说不痛。
52 maturity 47nzh     
n.成熟;完成;(支票、债券等)到期
参考例句:
  • These plants ought to reach maturity after five years.这些植物五年后就该长成了。
  • This is the period at which the body attains maturity.这是身体发育成熟的时期。
53 diverged db5a93fff259ad3ff2017a64912fa156     
分开( diverge的过去式和过去分词 ); 偏离; 分歧; 分道扬镳
参考例句:
  • Who knows when we'll meet again? 不知几时咱们能再见面!
  • At what time do you get up? 你几时起床?
54 divergence kkazz     
n.分歧,岔开
参考例句:
  • There is no sure cure for this transatlantic divergence.没有什么灵丹妙药可以消除大西洋两岸的分歧。
  • In short,it was an age full of conflicts and divergence of values.总之,这一时期是矛盾与价值观分歧的时期。
55 extremity tlgxq     
n.末端,尽头;尽力;终极;极度
参考例句:
  • I hope you will help them in their extremity.我希望你能帮助在穷途末路的他们。
  • What shall we do in this extremity?在这种极其困难的情况下我们该怎么办呢?
56 remains 1kMzTy     
n.剩余物,残留物;遗体,遗迹
参考例句:
  • He ate the remains of food hungrily.他狼吞虎咽地吃剩余的食物。
  • The remains of the meal were fed to the dog.残羹剩饭喂狗了。
57 extremities AtOzAr     
n.端点( extremity的名词复数 );尽头;手和足;极窘迫的境地
参考例句:
  • She was most noticeable, I thought, in respect of her extremities. 我觉得她那副穷极可怜的样子实在太惹人注目。 来自辞典例句
  • Winters may be quite cool at the northwestern extremities. 西北边区的冬天也可能会相当凉。 来自辞典例句
58 cellular aU1yo     
adj.移动的;细胞的,由细胞组成的
参考例句:
  • She has a cellular telephone in her car.她的汽车里有一部无线通讯电话机。
  • Many people use cellular materials as sensitive elements in hygrometers.很多人用蜂窝状的材料作为测量温度的传感元件。
59 elongated 6a3aeff7c3bf903f4176b42850937718     
v.延长,加长( elongate的过去式和过去分词 )
参考例句:
  • Modigliani's women have strangely elongated faces. 莫迪里阿尼画中的妇女都长着奇长无比的脸。
  • A piece of rubber can be elongated by streching. 一块橡皮可以拉长。 来自《用法词典》
60 lessened 6351a909991322c8a53dc9baa69dda6f     
减少的,减弱的
参考例句:
  • Listening to the speech through an interpreter lessened its impact somewhat. 演讲辞通过翻译的嘴说出来,多少削弱了演讲的力量。
  • The flight to suburbia lessened the number of middle-class families living within the city. 随着迁往郊外的风行,住在城内的中产家庭减少了。
61 abortion ZzjzxH     
n.流产,堕胎
参考例句:
  • She had an abortion at the women's health clinic.她在妇女保健医院做了流产手术。
  • A number of considerations have led her to have a wilful abortion.多种考虑使她执意堕胎。
62 spires 89c7a5b33df162052a427ff0c7ab3cc6     
n.(教堂的) 塔尖,尖顶( spire的名词复数 )
参考例句:
  • Her masts leveled with the spires of churches. 船的桅杆和教堂的塔尖一样高。 来自《简明英汉词典》
  • White church spires lift above green valleys. 教堂的白色尖顶耸立在绿色山谷中。 来自《简明英汉词典》
63 vertically SfmzYG     
adv.垂直地
参考例句:
  • Line the pages for the graph both horizontally and vertically.在这几页上同时画上横线和竖线,以便制作图表。
  • The human brain is divided vertically down the middle into two hemispheres.人脑从中央垂直地分为两半球。
64 beetles e572d93f9d42d4fe5aa8171c39c86a16     
n.甲虫( beetle的名词复数 )
参考例句:
  • Beetles bury pellets of dung and lay their eggs within them. 甲壳虫把粪粒埋起来,然后在里面产卵。 来自《简明英汉词典》
  • This kind of beetles have hard shell. 这类甲虫有坚硬的外壳。 来自《现代汉英综合大词典》
65 fissure Njbxt     
n.裂缝;裂伤
参考例句:
  • Though we all got out to examine the fissure,he remained in the car.我们纷纷下车察看那个大裂缝,他却呆在车上。
  • Ground fissure is the main geological disaster in Xi'an city construction.地裂缝是西安市主要的工程地质灾害问题。
66 fissured 27cba7efcbc71b84010b01208f0a9606     
adj.裂缝的v.裂开( fissure的过去式和过去分词 )
参考例句:
  • South African vine having a massive rootstock covered with deeply fissured bark. 南非藤蔓植物,有很大的根状茎,皮上有很深的裂纹。 来自互联网
  • The concentrated leakage passage in fissured rock is studied with dummy heat source method. 利用虚拟热源法研究坝基裂隙岩体中存在的集中渗漏通道。 来自互联网
67 apex mwrzX     
n.顶点,最高点
参考例句:
  • He reached the apex of power in the early 1930s.他在三十年代初达到了权力的顶峰。
  • His election to the presidency was the apex of his career.当选总统是他一生事业的顶峰。
68 bent QQ8yD     
n.爱好,癖好;adj.弯的;决心的,一心的
参考例句:
  • He was fully bent upon the project.他一心扑在这项计划上。
  • We bent over backward to help them.我们尽了最大努力帮助他们。
69 abruptly iINyJ     
adv.突然地,出其不意地
参考例句:
  • He gestured abruptly for Virginia to get in the car.他粗鲁地示意弗吉尼亚上车。
  • I was abruptly notified that a half-hour speech was expected of me.我突然被通知要讲半个小时的话。
70 stimulus 3huyO     
n.刺激,刺激物,促进因素,引起兴奋的事物
参考例句:
  • Regard each failure as a stimulus to further efforts.把每次失利看成对进一步努力的激励。
  • Light is a stimulus to growth in plants.光是促进植物生长的一个因素。
71 permanently KluzuU     
adv.永恒地,永久地,固定不变地
参考例句:
  • The accident left him permanently scarred.那次事故给他留下了永久的伤疤。
  • The ship is now permanently moored on the Thames in London.该船现在永久地停泊在伦敦泰晤士河边。
72 unintelligible sfuz2V     
adj.无法了解的,难解的,莫明其妙的
参考例句:
  • If a computer is given unintelligible data, it returns unintelligible results.如果计算机得到的是难以理解的数据,它给出的也将是难以理解的结果。
  • The terms were unintelligible to ordinary folk.这些术语一般人是不懂的。
73 casually UwBzvw     
adv.漠不关心地,无动于衷地,不负责任地
参考例句:
  • She remarked casually that she was changing her job.她当时漫不经心地说要换工作。
  • I casually mentioned that I might be interested in working abroad.我不经意地提到我可能会对出国工作感兴趣。
74 interfere b5lx0     
v.(in)干涉,干预;(with)妨碍,打扰
参考例句:
  • If we interfere, it may do more harm than good.如果我们干预的话,可能弊多利少。
  • When others interfere in the affair,it always makes troubles. 别人一卷入这一事件,棘手的事情就来了。
75 revolved b63ebb9b9e407e169395c5fc58399fe6     
v.(使)旋转( revolve的过去式和过去分词 );细想
参考例句:
  • The fan revolved slowly. 电扇缓慢地转动着。
  • The wheel revolved on its centre. 轮子绕中心转动。 来自《简明英汉词典》
76 inclination Gkwyj     
n.倾斜;点头;弯腰;斜坡;倾度;倾向;爱好
参考例句:
  • She greeted us with a slight inclination of the head.她微微点头向我们致意。
  • I did not feel the slightest inclination to hurry.我没有丝毫着急的意思。
77 pointed Il8zB4     
adj.尖的,直截了当的
参考例句:
  • He gave me a very sharp pointed pencil.他给我一支削得非常尖的铅笔。
  • She wished to show Mrs.John Dashwood by this pointed invitation to her brother.她想通过对达茨伍德夫人提出直截了当的邀请向她的哥哥表示出来。
78 obliquely ad073d5d92dfca025ebd4a198e291bdc     
adv.斜; 倾斜; 间接; 不光明正大
参考例句:
  • From the gateway two paths led obliquely across the court. 从门口那儿,有两条小路斜越过院子。 来自辞典例句
  • He was receding obliquely with a curious hurrying gait. 他歪着身子,古怪而急促地迈着步子,往后退去。 来自辞典例句
79 intercepts 3445ed8b5856a7dea04f0c0399409410     
(数学)截距( intercept的名词复数 )
参考例句:
  • It intercepts a portion of the light impinging on the photocell. 它遮住一部分照射在光电管上的光。
  • The pelletfilter intercepts the particulate matter. 颗粒过滤器将颗粒物进行拦截。
80 withers e30bf7b384bb09fe0dc96663bb9cde0b     
马肩隆
参考例句:
  • The girl's pitiful history would wring one's withers. 这女孩子的经历令人心碎。
  • "I will be there to show you," and so Mr. Withers withdrew. “我会等在那里,领你去看房间的,"威瑟斯先生这样说着,退了出去。 来自英汉文学 - 嘉莉妹妹
81 zinc DfxwX     
n.锌;vt.在...上镀锌
参考例句:
  • Brass is formed by the fusion of copper and zinc.黄铜是通过铜和锌的熔合而成的。
  • Zinc is used to protect other metals from corrosion.锌被用来保护其他金属不受腐蚀。
82 recoiled 8282f6b353b1fa6f91b917c46152c025     
v.畏缩( recoil的过去式和过去分词 );退缩;报应;返回
参考例句:
  • She recoiled from his touch. 她躲开他的触摸。
  • Howard recoiled a little at the sharpness in my voice. 听到我的尖声,霍华德往后缩了一下。 来自《简明英汉词典》
83 rugged yXVxX     
adj.高低不平的,粗糙的,粗壮的,强健的
参考例句:
  • Football players must be rugged.足球运动员必须健壮。
  • The Rocky Mountains have rugged mountains and roads.落基山脉有崇山峻岭和崎岖不平的道路。
84 bind Vt8zi     
vt.捆,包扎;装订;约束;使凝固;vi.变硬
参考例句:
  • I will let the waiter bind up the parcel for you.我让服务生帮你把包裹包起来。
  • He wants a shirt that does not bind him.他要一件不使他觉得过紧的衬衫。
85 moss X6QzA     
n.苔,藓,地衣
参考例句:
  • Moss grows on a rock.苔藓生在石头上。
  • He was found asleep on a pillow of leaves and moss.有人看见他枕着树叶和苔藓睡着了。
86 recoiling 6efc6419f5752ebc2e0d555d78bafc15     
v.畏缩( recoil的现在分词 );退缩;报应;返回
参考例句:
  • Some of the energy intended for the photon is drained off by the recoiling atom. 原来给予光子的能量有一部分为反冲原子所消耗。 来自辞典例句
  • A second method watches for another effect of the recoiling nucleus: ionization. 探测器使用的第二种方法,是观察反冲原子核的另一种效应:游离。 来自互联网
87 penetrate juSyv     
v.透(渗)入;刺入,刺穿;洞察,了解
参考例句:
  • Western ideas penetrate slowly through the East.西方观念逐渐传入东方。
  • The sunshine could not penetrate where the trees were thickest.阳光不能透入树木最浓密的地方。
88 swell IHnzB     
vi.膨胀,肿胀;增长,增强
参考例句:
  • The waves had taken on a deep swell.海浪汹涌。
  • His injured wrist began to swell.他那受伤的手腕开始肿了。
89 enveloped 8006411f03656275ea778a3c3978ff7a     
v.包围,笼罩,包住( envelop的过去式和过去分词 )
参考例句:
  • She was enveloped in a huge white towel. 她裹在一条白色大毛巾里。
  • Smoke from the burning house enveloped the whole street. 燃烧着的房子冒出的浓烟笼罩了整条街。 来自《简明英汉词典》
90 envelop Momxd     
vt.包,封,遮盖;包围
参考例句:
  • All combine to form a layer of mist to envelop this region.织成一层烟雾又笼罩着这个地区。
  • The dust cloud will envelop the planet within weeks.产生的尘云将会笼罩整个星球长达几周。
91 concealed 0v3zxG     
a.隐藏的,隐蔽的
参考例句:
  • The paintings were concealed beneath a thick layer of plaster. 那些画被隐藏在厚厚的灰泥层下面。
  • I think he had a gun concealed about his person. 我认为他当时身上藏有一支枪。
92 secrete hDezG     
vt.分泌;隐匿,使隐秘
参考例句:
  • The pores of your body secrete sweat.身上的毛孔分泌汗液。
  • Squirrels secrete a supply of nuts for winter.松鼠为准备过冬而藏坚果。
93 resinous WWZxj     
adj.树脂的,树脂质的,树脂制的
参考例句:
  • Alcohol is a solvent of resinous substances.酒精是树脂性物质的溶媒。
  • He observed that the more resinous the wood, the more resistant it was to decay.他观察到木材含树脂越多,其抗腐力越强。
94 crests 9ef5f38e01ed60489f228ef56d77c5c8     
v.到达山顶(或浪峰)( crest的第三人称单数 );到达洪峰,达到顶点
参考例句:
  • The surfers were riding in towards the beach on the crests of the waves. 冲浪者们顺着浪头冲向岸边。 来自《简明英汉词典》
  • The correspondent aroused, heard the crash of the toppled crests. 记者醒了,他听见了浪头倒塌下来的轰隆轰隆声。 来自辞典例句
95 embedded lt9ztS     
a.扎牢的
参考例句:
  • an operation to remove glass that was embedded in his leg 取出扎入他腿部玻璃的手术
  • He has embedded his name in the minds of millions of people. 他的名字铭刻在数百万人民心中。
96 furrows 4df659ff2160099810bd673d8f892c4f     
n.犁沟( furrow的名词复数 );(脸上的)皱纹v.犁田,开沟( furrow的第三人称单数 )
参考例句:
  • I could tell from the deep furrows in her forehead that she was very disturbed by the news. 从她额头深深的皱纹上,我可以看出她听了这个消息非常不安。 来自《简明英汉词典》
  • Dirt bike trails crisscrossed the grassy furrows. 越野摩托车的轮迹纵横交错地布满条条草沟。 来自辞典例句
97 withdrawn eeczDJ     
vt.收回;使退出;vi.撤退,退出
参考例句:
  • Our force has been withdrawn from the danger area.我们的军队已从危险地区撤出。
  • All foreign troops should be withdrawn to their own countries.一切外国军队都应撤回本国去。
98 drawn MuXzIi     
v.拖,拉,拔出;adj.憔悴的,紧张的
参考例句:
  • All the characters in the story are drawn from life.故事中的所有人物都取材于生活。
  • Her gaze was drawn irresistibly to the scene outside.她的目光禁不住被外面的风景所吸引。
99 outgrowing 82cd0add74c70b02ba181ae60184a279     
长[发展] 得超过(某物)的范围( outgrow的现在分词 ); 长[发展]得不能再要(某物); 长得比…快; 生长速度超过
参考例句:
  • Vibrant colors last year around without wilting, watering, or outgrowing their pots early, quantities are limited. 它高贵优雅,不容易萎蔫,不用经常浇水,也不会长出花盆之外。
100 adherence KyjzT     
n.信奉,依附,坚持,固着
参考例句:
  • He was well known for his adherence to the rules.他因遵循这些规定而出名。
  • The teacher demanded adherence to the rules.老师要求学生们遵守纪律。
101 glistening glistening     
adj.闪耀的,反光的v.湿物闪耀,闪亮( glisten的现在分词 )
参考例句:
  • Her eyes were glistening with tears. 她眼里闪着晶莹的泪花。
  • Her eyes were glistening with tears. 她眼睛中的泪水闪着柔和的光。 来自《用法词典》
102 cylindrical CnMza     
adj.圆筒形的
参考例句:
  • huge cylindrical gas tanks 巨大的圆柱形贮气罐
  • Beer cans are cylindrical. 啤酒罐子是圆筒形的。
103 lichens 8ba13422ddec8ecf73fb1d0cb20f495f     
n.地衣( lichen的名词复数 )
参考例句:
  • The only plants to be found in Antarctica are algae, mosses, and lichens. 在南极洲所发现的植物只有藻类、苔藓和地衣。 来自辞典例句
  • Litmus: Mixture of coloured organic compounds obtained from several species of lichens. 石蕊:从几种地衣类植物中获取的带色有机化合物的混合物。 来自互联网
104 mosses c7366f977619e62b758615914b126fcb     
n. 藓类, 苔藓植物 名词moss的复数形式
参考例句:
  • Ferns, mosses and fungi spread by means of spores. 蕨类植物、苔藓和真菌通过孢子传播蔓生。
  • The only plants to be found in Antarctica are algae, mosses, and lichens. 在南极洲所发现的植物只有藻类、苔藓和地衣。
105 abounds e383095f177bb040b7344dc416ce6761     
v.大量存在,充满,富于( abound的第三人称单数 )
参考例句:
  • The place abounds with fruit, especially pears and peaches. 此地盛产水果,尤以梨桃著称。 来自《现代汉英综合大词典》
  • This country abounds with fruit. 这个国家盛产水果。 来自《现代汉英综合大词典》
106 subdivided 9c88c887e396c8cfad2991e2ef9b98bb     
再分,细分( subdivide的过去式和过去分词 )
参考例句:
  • The compound was subdivided into four living areas. 那个区域被划分成4个居住小区。
  • This part of geologic calendar has not been satisfactorily subdivided. 这部分地质年代表还没有令人满意地再细分出来。
107 conspicuous spszE     
adj.明眼的,惹人注目的;炫耀的,摆阔气的
参考例句:
  • It is conspicuous that smoking is harmful to health.很明显,抽烟对健康有害。
  • Its colouring makes it highly conspicuous.它的色彩使它非常惹人注目。
108 bifurcates 0f24ee83f0ae4c6b2c4d9acd57ef83f3     
n.(指道路、河流、树枝等)分岔,分成两支( bifurcate的名词复数 );使分枝,使分叉;分叉的v.(指道路、河流、树枝等)分岔,分成两支( bifurcate的第三人称单数 );使分枝,使分叉
参考例句:
  • The stream bifurcates into two narrow winding channels. 那条小溪分成两股窄而弯曲的支流。 来自《简明英汉词典》
  • The blood supply bifurcates between eight and thirty times before reaching each particular location in the body. 血液要分流8到30次才能到达身体的各个部位。 来自辞典例句
109 bifurcate 9Wdzn     
adj.二叉的,双峰的
参考例句:
  • Drainage was to the north and individual channels bifurcate in that direction.整个水系向北排水,各个河道朝该方向分叉。
  • Communicative and semantive translation bifurcate at a later stage of analytical or cognitive translation.交际翻译和语义翻译在认知翻译的后阶段分道扬镳。
110 neatly ynZzBp     
adv.整洁地,干净地,灵巧地,熟练地
参考例句:
  • Sailors know how to wind up a long rope neatly.水手们知道怎样把一条大绳利落地缠好。
  • The child's dress is neatly gathered at the neck.那孩子的衣服在领口处打着整齐的皱褶。
111 engraved be672d34fc347de7d97da3537d2c3c95     
v.在(硬物)上雕刻(字,画等)( engrave的过去式和过去分词 );将某事物深深印在(记忆或头脑中)
参考例句:
  • The silver cup was engraved with his name. 银杯上刻有他的名字。
  • It was prettily engraved with flowers on the back. 此件雕刻精美,背面有花饰图案。 来自《简明英汉词典》
112 bristles d40df625d0ab9008a3936dbd866fa2ec     
短而硬的毛发,刷子毛( bristle的名词复数 )
参考例句:
  • the bristles on his chin 他下巴上的胡楂子
  • This job bristles with difficulties. 这项工作困难重重。
113 rigid jDPyf     
adj.严格的,死板的;刚硬的,僵硬的
参考例句:
  • She became as rigid as adamant.她变得如顽石般的固执。
  • The examination was so rigid that nearly all aspirants were ruled out.考试很严,几乎所有的考生都被淘汰了。
114 tapering pq5wC     
adj.尖端细的
参考例句:
  • Interest in the scandal seems to be tapering off. 人们对那件丑闻的兴趣似乎越来越小了。
  • Nonproductive expenditures keep tapering down. 非生产性开支一直在下降。
115 elastic Tjbzq     
n.橡皮圈,松紧带;adj.有弹性的;灵活的
参考例句:
  • Rubber is an elastic material.橡胶是一种弹性材料。
  • These regulations are elastic.这些规定是有弹性的。
116 flattened 1d5d9fedd9ab44a19d9f30a0b81f79a8     
[医](水)平扁的,弄平的
参考例句:
  • She flattened her nose and lips against the window. 她把鼻子和嘴唇紧贴着窗户。
  • I flattened myself against the wall to let them pass. 我身体紧靠着墙让他们通过。
117 translucent yniwY     
adj.半透明的;透明的
参考例句:
  • The building is roofed entirely with translucent corrugated plastic.这座建筑完全用半透明瓦楞塑料封顶。
  • A small difference between them will render the composite translucent.微小的差别,也会使复合材料变成半透明。
118 extraordinarily Vlwxw     
adv.格外地;极端地
参考例句:
  • She is an extraordinarily beautiful girl.她是个美丽非凡的姑娘。
  • The sea was extraordinarily calm that morning.那天清晨,大海出奇地宁静。
119 crooked xvazAv     
adj.弯曲的;不诚实的,狡猾的,不正当的
参考例句:
  • He crooked a finger to tell us to go over to him.他弯了弯手指,示意我们到他那儿去。
  • You have to drive slowly on these crooked country roads.在这些弯弯曲曲的乡间小路上你得慢慢开车。
120 interval 85kxY     
n.间隔,间距;幕间休息,中场休息
参考例句:
  • The interval between the two trees measures 40 feet.这两棵树的间隔是40英尺。
  • There was a long interval before he anwsered the telephone.隔了好久他才回了电话。
121 cohere PbRy0     
vt.附着,连贯,一致
参考例句:
  • The adornments do not cohere with the basic design.装饰物与设计的基调不协调。
  • When you squeeze a handful of snow,the flakes cohere to make a snowball.你把一团雪捏紧,雪就黏合成雪球。
122 velocity rLYzx     
n.速度,速率
参考例句:
  • Einstein's theory links energy with mass and velocity of light.爱因斯坦的理论把能量同质量和光速联系起来。
  • The velocity of light is about 300000 kilometres per second.光速约为每秒300000公里。
123 standing 2hCzgo     
n.持续,地位;adj.永久的,不动的,直立的,不流动的
参考例句:
  • After the earthquake only a few houses were left standing.地震过后只有几幢房屋还立着。
  • They're standing out against any change in the law.他们坚决反对对法律做任何修改。
124 ascent TvFzD     
n.(声望或地位)提高;上升,升高;登高
参考例句:
  • His rapid ascent in the social scale was surprising.他的社会地位提高之迅速令人吃惊。
  • Burke pushed the button and the elevator began its slow ascent.伯克按动电钮,电梯开始缓慢上升。
125 entangled e3d30c3c857155b7a602a9ac53ade890     
adj.卷入的;陷入的;被缠住的;缠在一起的v.使某人(某物/自己)缠绕,纠缠于(某物中),使某人(自己)陷入(困难或复杂的环境中)( entangle的过去式和过去分词 )
参考例句:
  • The bird had become entangled in the wire netting. 那只小鸟被铁丝网缠住了。
  • Some military observers fear the US could get entangled in another war. 一些军事观察家担心美国会卷入另一场战争。 来自《简明英汉词典》
126 peculiar cinyo     
adj.古怪的,异常的;特殊的,特有的
参考例句:
  • He walks in a peculiar fashion.他走路的样子很奇特。
  • He looked at me with a very peculiar expression.他用一种很奇怪的表情看着我。
127 conformity Hpuz9     
n.一致,遵从,顺从
参考例句:
  • Was his action in conformity with the law?他的行动是否合法?
  • The plan was made in conformity with his views.计划仍按他的意见制定。
128 countenanced 44f0fe602a9688c358e938f9da83a807     
v.支持,赞同,批准( countenance的过去式 )
参考例句:
129 memoir O7Hz7     
n.[pl.]回忆录,自传;记事录
参考例句:
  • He has just published a memoir in honour of his captain.他刚刚出了一本传记来纪念他的队长。
  • In her memoir,the actress wrote about the bittersweet memories of her first love.在那个女演员的自传中,她写到了自己苦乐掺半的初恋。
130 annex HwzzC     
vt.兼并,吞并;n.附属建筑物
参考例句:
  • It plans to annex an England company in order to enlarge the market.它计划兼并一家英国公司以扩大市场。
  • The annex has been built on to the main building.主楼配建有附属的建筑物。
131 intervals f46c9d8b430e8c86dea610ec56b7cbef     
n.[军事]间隔( interval的名词复数 );间隔时间;[数学]区间;(戏剧、电影或音乐会的)幕间休息
参考例句:
  • The forecast said there would be sunny intervals and showers. 预报间晴,有阵雨。
  • Meetings take place at fortnightly intervals. 每两周开一次会。
132 affixed 0732dcfdc852b2620b9edaa452082857     
adj.[医]附着的,附着的v.附加( affix的过去式和过去分词 );粘贴;加以;盖(印章)
参考例句:
  • The label should be firmly affixed to the package. 这张标签应该牢牢地贴在包裹上。
  • He affixed the sign to the wall. 他将标记贴到墙上。 来自《简明英汉词典》
133 annexed ca83f28e6402c883ed613e9ee0580f48     
[法] 附加的,附属的
参考例句:
  • Germany annexed Austria in 1938. 1938年德国吞并了奥地利。
  • The outlying villages were formally annexed by the town last year. 那些偏远的村庄于去年正式被并入该镇。
134 revolves 63fec560e495199631aad0cc33ccb782     
v.(使)旋转( revolve的第三人称单数 );细想
参考例句:
  • The earth revolves both round the sun and on its own axis. 地球既公转又自转。 来自《现代汉英综合大词典》
  • Thus a wheel revolves on its axle. 于是,轮子在轴上旋转。 来自《简明英汉词典》
135 laterally opIzAf     
ad.横向地;侧面地;旁边地
参考例句:
  • Shafts were sunk, with tunnels dug laterally. 竖井已经打下,并且挖有横向矿道。
  • When the plate becomes unstable, it buckles laterally. 当板失去稳定时,就发生横向屈曲。
136 deference mmKzz     
n.尊重,顺从;敬意
参考例句:
  • Do you treat your parents and teachers with deference?你对父母师长尊敬吗?
  • The major defect of their work was deference to authority.他们的主要缺陷是趋从权威。
137 partially yL7xm     
adv.部分地,从某些方面讲
参考例句:
  • The door was partially concealed by the drapes.门有一部分被门帘遮住了。
  • The police managed to restore calm and the curfew was partially lifted.警方设法恢复了平静,宵禁部分解除。
138 affected TzUzg0     
adj.不自然的,假装的
参考例句:
  • She showed an affected interest in our subject.她假装对我们的课题感到兴趣。
  • His manners are affected.他的态度不自然。
139 vestige 3LNzg     
n.痕迹,遗迹,残余
参考例句:
  • Some upright stones in wild places are the vestige of ancient religions.荒原上一些直立的石块是古老宗教的遗迹。
  • Every vestige has been swept away.一切痕迹都被一扫而光。
140 destitute 4vOxu     
adj.缺乏的;穷困的
参考例句:
  • They were destitute of necessaries of life.他们缺少生活必需品。
  • They are destitute of common sense.他们缺乏常识。
141 previously bkzzzC     
adv.以前,先前(地)
参考例句:
  • The bicycle tyre blew out at a previously damaged point.自行车胎在以前损坏过的地方又爆开了。
  • Let me digress for a moment and explain what had happened previously.让我岔开一会儿,解释原先发生了什么。
142 sufficiently 0htzMB     
adv.足够地,充分地
参考例句:
  • It turned out he had not insured the house sufficiently.原来他没有给房屋投足保险。
  • The new policy was sufficiently elastic to accommodate both views.新政策充分灵活地适用两种观点。
143 efficiently ZuTzXQ     
adv.高效率地,有能力地
参考例句:
  • The worker oils the machine to operate it more efficiently.工人给机器上油以使机器运转更有效。
  • Local authorities have to learn to allocate resources efficiently.地方政府必须学会有效地分配资源。
144 primordial 11PzK     
adj.原始的;最初的
参考例句:
  • It is the primordial force that propels us forward.它是推动我们前进的原始动力。
  • The Neanderthal Man is one of our primordial ancestors.的尼安德特人是我们的原始祖先之一.
145 furrowed furrowed     
v.犁田,开沟( furrow的过去式和过去分词 )
参考例句:
  • Overhead hung a summer sky furrowed with the rash of rockets. 头顶上的夏日夜空纵横着急疾而过的焰火。 来自辞典例句
  • The car furrowed the loose sand as it crossed the desert. 车子横过沙漠,在松软的沙土上犁出了一道车辙。 来自辞典例句
146 converged 7de33615d7fbc1cb7bc608d12f1993d2     
v.(线条、运动的物体等)会于一点( converge的过去式 );(趋于)相似或相同;人或车辆汇集;聚集
参考例句:
  • Thousands of supporters converged on London for the rally. 成千上万的支持者从四面八方汇聚伦敦举行集会。
  • People converged on the political meeting from all parts of the city. 人们从城市的四面八方涌向这次政治集会。 来自《简明英汉词典》
147 halfway Xrvzdq     
adj.中途的,不彻底的,部分的;adv.半路地,在中途,在半途
参考例句:
  • We had got only halfway when it began to get dark.走到半路,天就黑了。
  • In study the worst danger is give up halfway.在学习上,最忌讳的是有始无终。
148 diverges 90b4d0670b4ace63aa90be3a6a5db1b9     
分开( diverge的第三人称单数 ); 偏离; 分歧; 分道扬镳
参考例句:
  • The beam of flashlight diverges, but it can be refocused with lenses. 一个发散的闪光灯束可以用透镜重新聚焦。
  • At the end of the wood, the path diverges to the left. 在树林的尽头,小路向左拐去。
149 backwards BP9ya     
adv.往回地,向原处,倒,相反,前后倒置地
参考例句:
  • He turned on the light and began to pace backwards and forwards.他打开电灯并开始走来走去。
  • All the girls fell over backwards to get the party ready.姑娘们迫不及待地为聚会做准备。
150 zigzag Hf6wW     
n.曲折,之字形;adj.曲折的,锯齿形的;adv.曲折地,成锯齿形地;vt.使曲折;vi.曲折前行
参考例句:
  • The lightning made a zigzag in the sky.闪电在天空划出一道Z字形。
  • The path runs zigzag up the hill.小径向山顶蜿蜒盘旋。
151 solely FwGwe     
adv.仅仅,唯一地
参考例句:
  • Success should not be measured solely by educational achievement.成功与否不应只用学业成绩来衡量。
  • The town depends almost solely on the tourist trade.这座城市几乎完全靠旅游业维持。
152 descended guQzoy     
a.为...后裔的,出身于...的
参考例句:
  • A mood of melancholy descended on us. 一种悲伤的情绪袭上我们的心头。
  • The path descended the hill in a series of zigzags. 小路呈连续的之字形顺着山坡蜿蜒而下。
153 progenitors a94fd5bd89007bd4e14e8ea41b9af527     
n.祖先( progenitor的名词复数 );先驱;前辈;原本
参考例句:
  • The researchers also showed that the progenitors mature into neurons in Petri dishes. 研究人员还表示,在佩特里培养皿中的脑细胞前体可以发育成神经元。 来自英汉非文学 - 生命科学 - 大脑与疾病
  • Though I am poor and wretched now, my progenitors were famously wealthy. 别看我现在穷困潦倒,我家上世可是有名的富翁。 来自互联网
154 specimens 91fc365099a256001af897127174fcce     
n.样品( specimen的名词复数 );范例;(化验的)抽样;某种类型的人
参考例句:
  • Astronauts have brought back specimens of rock from the moon. 宇航员从月球带回了岩石标本。
  • The traveler brought back some specimens of the rocks from the mountains. 那位旅行者从山上带回了一些岩石标本。 来自《简明英汉词典》
155 specimen Xvtwm     
n.样本,标本
参考例句:
  • You'll need tweezers to hold up the specimen.你要用镊子来夹这标本。
  • This specimen is richly variegated in colour.这件标本上有很多颜色。
156 credible JOAzG     
adj.可信任的,可靠的
参考例句:
  • The news report is hardly credible.这则新闻报道令人难以置信。
  • Is there a credible alternative to the nuclear deterrent?是否有可以取代核威慑力量的可靠办法?
157 behold jQKy9     
v.看,注视,看到
参考例句:
  • The industry of these little ants is wonderful to behold.这些小蚂蚁辛勤劳动的样子看上去真令人惊叹。
  • The sunrise at the seaside was quite a sight to behold.海滨日出真是个奇景。
158 microscopically b95eb0161484f1e40de775b8b54c545f     
显微镜下
参考例句:
  • Microscopically the ores are medium grained to amorphous. 显微镜下,矿石为中粒至非晶质。 来自辞典例句
  • He studied microscopically the statistics of trade. 他极仔细地研究了贸易统计数字。 来自辞典例句
159 attenuated d547804f5ac8a605def5470fdb566b22     
v.(使)变细( attenuate的过去式和过去分词 );(使)变薄;(使)变小;减弱
参考例句:
  • an attenuated form of the virus 毒性已衰减的病毒
  • You're a seraphic suggestion of attenuated thought . 你的思想是轻灵得如同天使一般的。 来自辞典例句
160 distinguished wu9z3v     
adj.卓越的,杰出的,著名的
参考例句:
  • Elephants are distinguished from other animals by their long noses.大象以其长长的鼻子显示出与其他动物的不同。
  • A banquet was given in honor of the distinguished guests.宴会是为了向贵宾们致敬而举行的。


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