Darwin, C., 1880  ·  passages 60 to 89 of 1151

The Power of Movement in Plants

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Iaxalis rosea: circumnutation of cotyledons, the hypocotyl being secured to a stick; illumina- ted from above. Figure here given one-half of original scale. 7.40 am. on the following morn- ing; and we see that during the daytime, in the course of 11 h. 15 m., it travelled thrice down and twice up. After 5.45 p.n. it moved rapidly downwards, and in an hour or two depended verti- cally; it thus remained all night asleep. This position could not be represented on the vertical glass nor in the figure here given. By 640 a.m. on the following morning (18th) both cotyledons had risen greatly, and they con- tinued to rise until 8 a.m., when they stood almost horizontally. Their movement was traced dur- ing the whole of this day and until the next morning; but a tracing is not given, as it was closely similar to Fig. 18, except- ing that the lines were more zigzag. The cotyledons moved 7 times, either upwards or down- wards; and at about 4 p.m. the great nocturnal sinking move- ment commenced.

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Another seedling was observed in a similar manner during nearly 24h., but with the difference that the hypocotyl was left free. The movement also was less magnified. Between 8.12 am. and 5 p.m. on the 18th, the apex of the cotyle- don moved 7 times upwards or downwards (Fig. 14). The noc- turnal sinking movement, which is merely a great increase of one of the diurnal oscillations, com- menced about 4 p.m. Oxalis Valdiviana.—This species is interesting, as the coty-

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Jedons rise perpendicularly upwards at night so as to come inte slose contact, instead of sinking vertically downwards, as in the case of O. rosea, A glass filament was fixed to a cotyledon, ‘17 of an inch in length, and the hypocotyl was left free. On Oxalis rosea: conjoint circumnutation of Oxalis Vuldiviana : conjoint the cotyledons and hypocotyl, traced circumnutation of a cotyle- from 8.12 a.m. on June 18th to 7.30 don and the hypocotyl, traced A.M. 19th. The apex of the cotyledon on vertical glass, during 24 stood only 33 inches from the vertical hours. Figure here given

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glass. Figure here given one-half of one-half of original scale 5 original scale. seedling illuminated trom the first day the seedling was placed too far from the vertical glass; sd that the tracing was enormously exaggerated and the movement could not be traced when the cotyledon either rose or sank much; but it was clearly seen that the cotyledons rose thrice and fell twice between 8.15 am. and 4.15 p.m. Early on the following morning (June 19th) the apex of a cotyledon was

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placed only 12 inch from the vertical glass. At 640 a.m. it stood horizontally; it then fell till 8.35, and then rose. Al- together in the course of 12h. it rose thrice and fell thrice, as may be seen in Fig. 15. The great nocturnal rise of the coty- ledongs usually commences about 4 or 5 p.m., and on the following morning they are expanded or stand horizontally at about 6.30 am. In the present instance, however, ihe great nocturnal rise did not commence till 7 p.m.; but this was due to the hypocotyl] having from some unknown cause temporarily bent to the left side, as is shown in the tracing. To ascertain positively that the hypocotyl circumnutated, a mark was placed at 8.15 P.M. behind the two now closed and vertical cotyledons; and the movement of a glass filament fixed upright to the top of the hypocotyl was traced until 10.40 p.m. During this time it moved from side to side, as well as backwards and forwards, plainly showing circumnutation; but the movement was small in extent. Therefore Fig. 15 represents fairly well the move- ments of the cotyledons alone, with the exception of the one yreat afternoon curvature to the left.

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Oxalis corniculata (var. cuprea).—The cotyledons rise at night to a variable degree above the horizon, generally about 45°: those on some seedlings between 2 and 5 days old were found to be in continued movement all day long; but the movements were more simple than in the last two species. This may have partly resulted from their not being sufficiently illuminated whilst being observed, as was shown by their not beginning tc rise until very late in the evening.

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Oxalis (Biophytum) sensitiva.—The cotyledons are highly re- markable from the amplitude and rapidity of their movements during the day. The angles at which they stood above or beneath the horizon were measured at short intervals of time; and we regret that their course was not traced during the whole day. We will give only a few of the measurements, which were made whilst the seedlings were exposed to a temperature of 224° to 244°C. One cotyledon rose 70° in 11 m.; another, ona distinct seedling, fell 80° in 12m. Immediately before this latter fal] the same cotyledon had risen from a vertically downward to a vertically upward position in 1 h. 48 m., and had therefore passed through 180° in under 2h. We have met with no other instance of a circumnutating movement of such great amplitude as 180°; nor of such rapidity of movement as the passage through 80° in 121. The cotyledons of this plant sleep at night by rising

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vertically and coming into close contact. This upward move- ment differs from one of the great diurnal oscillations above described only by the position being permanent during the night and by its periodicity, as it always commences late in the evening. Tropxolum minus (?) (var. Tom Thumb) (Tropzoles).—The cotyledons are hypogean, or never rise above the ground. By removing the soil a buried epicotyl or plumule was found, with its summit arched abruptly down- wards, like the arched hypocotyl of the cabbage previously described. A glass filament with a bead at its end was affixed to the basal half or leg, just above the hypogean cotyledons, which were again almost surrounded by loose earth. The tracing (Fig. 16) shows the course of the bead during 11h. After the last dot given in the figure, the bead moved to a great distance, aud finally off the glass, in the direction indicated by the broken line. This great movement, due to increased growth along the con- cave surface of the arch, was caused Tropeolum minus (2): circum- by the basal leg bending back- nutation of buried and arched wards from the upper part, that is — epicotyl, traced on a horizon- in a direction opposite to the depen- a hail 1 saatiaetapre a dent tip, in the same manner as of filament magnified 27 occurred with the hypocotyl of times. the cabbage. Another buried and arched epicotyl was observed in the same manner, excepting that the two legs of the arch were tied together with fine silk for the sake of preventing the great movement just mentioned.

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before, but the line followed was not so straight. During the morning the tied arch moved in an irregularly circular, strongly zigzag course, and to a greater distance than in the previous case, as was shown in a tracing, magnified 18 times. The move- ments of a young plant bearing a few leaves and of a mature plant, will hereafter be described. Citrus aurantium (Orange) (Aurantiaceze).—The cotyledons are hypogean. The circumnutation of an epicotyl, which at the close of our observations was ‘59 of an inch (15 mm.) in height above the ground, is shown in the annexed figure (Fig. 17), 98 observed during a period of 44h. 40 m.

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Gitrus aurantium: circumnutation of epicotyl with a filament fixed traus- versely near its apex, traced on a horizontal glass, from 12.13 P.M. on Feb. 20th to 8.55 A.M. on 22nd. The movement of the bead of the filament was at first magnified 21 times, or 10}, in figure here given, and afterwards 36 times, or 18 as here given; seedling illuminated from above. Aisculus hippocastanum (Hippocastanex).—Germinating seeds were placed in a tin box, kept moist internally, with a sloping bank of damp argillaceous sand, on which four smoked glass- plates rested, inclined at angles of 70° and 65° with the horizon. The tips of the radicles were placed so as just to touch the upper end of the glass-plates, and, as they grew downwards they pressed lightly, owing to geotropism, on the smoked surfaces, and left tracks of their course. In the middle part of each track the glass was swept clean, but the margins were much blurred and irregular. Copies of two of these tracks ‘all four being nearly alike) were made on tracing paper placed over the glass-plates after they had been varnished; and they are as exact as possible, considering the nature of the margins (Fig. 18). They suffice to show that there was some lateral, almost serpentine movement, and that the tips in their down- ward course pressed with unequal force on the plates, as

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the tracks varic(l in breadth. The more perfectly serpentine tracks made by the radicles of Phaseolus multiflorus and Vicia faba (presently to be described), render it almost certain that the radicles of the present plant circumnutated. Phaseolus multiflorus (Leguminose). —Four smoked glass-plates were ar- ranged in the same manner as des- cribed under Aisculus, and the tracks left by the tips of four radicles of the present plant, whilst growing down- wards, were photographed as trans- parent objects. Three of them are here exactly copied (Fig. 19). Their serpentine courses show that the tips moved regularly from side to side; they also pressed alternately with greater or less force on the plates, sometimes rising up and leaving them altogether for a very short distance; but this was better seen on the original plates than in the copies,

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lines of tracks left on in- clined glass-plates by tips of radicles. In A the plate was inclined at 70° with the horizon, and the radicle was 1°9 inch in length, and +23 inch in diameter at base. In B the plate was inclined 65° with the horizon, and the radicle was a trifle larger. These radicles therefore were continually moving in all direc- tions—that is, they circumnutated. The distance between the extreme right and left positions of the radicle A, in its lateral movement, was 2 mm., as ascer- tained by measurement with an eye-piece micrometer.

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Vicia faba (Common Bean) (Leguminose).— Radicle. —Some beans were allowed to germinate protruded its radicle to a length of °2 of an inch, it was turned upside down, so that the radicle, which was kept in damp air, now stood upright. A filament, nearly an inch in length, was Phaseolus multiflorus: tracks left on inclined smoked glass-plates by tips of radicles in growing downwards. inclined at 60°, B inclined at 68° with the horizon. affixed obliquely near its tip; and the movement of the terminal bead was traced from 8.30 a.m. to 10.30 P.m., as shown in Fig. 18. The radicle at first changed its course twice

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abruptly, then made a small loop and then a larger zigzag curve. During the night and till 1la.m. on the following Vicia faba: circumnutation of a radicle, at first pointing verti-ally up- wards, kept in darkness, traced on a horizontal] glass, during 14 hours, Movement of bead of filament magnified 23 times, here reduced to one-half of original scale. morning, the bead moved to a great distance in a nearly straight line, in the direction indicated by the broken line in the figure. This resulted from the tip bending quickly downwards, as it had now become much declined, and had thus gained a position highly favourable for the action of geotropism.

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Vicia faba: tracks left on inclined smoked glass-plates, by tips of radicles in growing downwards. Plate C was inclined at 63°, plates A and D Me 71°, plate B at 75°, and plate E at a few degrees beneath the We next experimented on nearly a score of radicles by allowing them to grow downwards over inclined plates of smoked glass, in exactly the same manner as with Atsculus and Phaseolus. Some of the plates were inclined only a few degrees beneath the horizon, but most of them between 6U° and 75° In the latter cases the radicles in growing downwards were deflected only a little from the direction which they had followed whilst germinating in sawdust, and they pressed lightly on the glass- plates (Fig. 21). Five of the most distinct tracks are here copied, and they are all slightly sinuous, showing circumnuta- tion. Moreover, a close examination of almost every one of the tracks clearly showed that the tips in their downward course had alternately pressed with greater or less force on the plates, and had sometimes risen up so as nearly to leave them for short intervals, The distance between the extreme right and left positions of the radicle A was 0°7 mm., ascertained in the same manner as in the case of Phaseolus.

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Epicotyl.—At the point where the radicle had protruded from a bean laid on its side, a flattened solid lump projected ‘1 of an inch, in the same horizontal plane with the bean. This protuber- ance consisted of the convex summit of the arched epicotyl; and as it became developed the two legs of the arch curved themselves laterally upwards, owing to apogeotropism, at such a rate that the arch stood highly inclined after 14h., and vertically in 48h. A filament was fixed to the crown of the protuberance befure any arch was visible, but the basal half grew so quickly that on the second morning the end of the filament was bowed greatly:downwards. It was therefore re- moved and fixed lower down. ‘The line traced during these two days extended in the same general direction, and was in parts nearly straight, and in others plainly zigzag, thus giving some evidence of circumnutation.

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As the arched epicotyl, in whatever position it may be placed, bends quickly upwards through apogeotropism, and as the two legs tend at a very early age to separate from one another, as soon as they are relieved from the pressure of the surrounding earth, it was difficult to ascertain positively whether the epicotyl, whilst remaining arched, circumnutated. Therefore some rather deeply buried beans were uncovered, and the two legs of the arches were tied together, as had been done with the epicotyl of Tropzolum and the hypocotyl of the Cabbage. The move- ments of the tied arches were traced in the usual manner on

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two occasions during three days. But the tracings made under such unnatural conditions are not worth giving; and it need only be said that the lines were decidedly zigzag, and that small loops were occasionally formed. We may therefore con- elude that the epicotyl circumnutates whilst still arched and before it has grown tall enough to break through the surface of the ground. 7 In order to observe the movements of the epicotyl at a some- what more advanced age, a filament was fixed near the base of one which was no longer arched, for its upper half now formed a right angle with the lower half. This bean had germinated on bare damp sand, and the epicotyl began to straighten itself much sooner than would have occurred if it had been properly planted. The course pursued during 50h. (from 9 a.m. Dee. 26th, to 11 a.m. 28th) is here shown (Fig. 22); and we sea

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Vicia faba: circumuutation of young epicotyl, traced in darkness during 50 hours on a horizontal glass. Movement of bead of filament mag- nified 20 times, here reduced to one-half of original scale. that the epicotyl circumnutated during the whole time, Its basal part grew so much during the 50h. that the filament at the end of our observations was attached at the height of ‘4 inch above the upper surface of the bean, instead of close toit. If the bean had been properly planted, this part of the epicotyl would still have been beneath the soil.

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Late in the evening of the 28th, some hours after the above observations were completed, the epicotyl had grown much straighter, for the upper part now formed a widely open angle with the lower part. A filament was fixed to the upright basal part, higher up than before, close beneath the lowest scale-like process or homologue of a leaf ; and its movement was traced during 38 h. (Fig. 23). We here again have plain evidence of continued circumnutation. Had the bean been properly planted, the part of the epicotyl to which the filament was attached, the

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Vicia faba: ciycumnutation of the same epicoty] as in Fig. 22, a little more advanced in age, traced under similar conditions as before, from 8.40 a.14. Tee 28th, to 10.50 a.m. 30th. Movement of bead here magnified movement of which is here shown, would probably have just risen above the surface of the ground. Lathyrus nissolia (Leguminose).—This plant was selected for observation from being an abnormal form with grass-like leaves. Lathyrus nissolia: circumnutation of stem of young seedling, traced iu darkness on a horizontal glass, from 6.45 a.m. Nov. 22nd, to 7 a.M. 23rd. Movement of end of leaf magnified about 12 times, here re- duced to one-half of original scale.

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The cotyledons are hypogean, and the epicotyl breaks through the ground in an arched form. The movements of a stem, 12 inch in height, consisting of three internodes, the lower one almost wholly subterranean, and the upper one bearing a short, narrow leaf, is shown during 24 h.,in Fig. 24. No glass filament was employed, but a mark was placed beneath the apex of the leaf. The actual length of the longer of the two ellipses de- scribed by the stem was about °14 of an inch. On the previous day the chief line of movement was nearly at right angles to that shown in the present figure, and it was more simple.

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Cassia tora: conjoint circumnutation of cotyledons and hypocotyl, traced on vertical glass, from 7.10 a.m. Sept. 25th to 7.30 A.M. 26th, Figure here given reduced to one-half of original scale. * Seeds of tlis plant, which flourish or flower well with us; grew neur the sea-side, were sent they were sent to Kew, and were to us by Fritz Miiller from §, pronounced not to be distingnish- Brazil. Tie seedlings did not able from C. tora. north-east window ; it bent very little towards it, as the bypo- cotyl which was left free was rather old, and therefore not highly heliotropic. A filament had been fixed to the midrib of one of the cotyledons, and the movement of the whole seedling was traced during two days. The circumnutation of the hypocotyl is quite insignificant compared with that of the cotyledons. These rise up vertically at night and come into close contact; so that they may be said to sleep. This seedling was so old that a very small true leaf had been developed, which at night was completely hidden by the closed cotyledons. On Sept. 24th, between 8 a.m. and 5 p.m., the cotyledons moved five times up and five times down; they therefore described five irregular ellipses in the course of the 9h. The great nocturnal rise com- menced about 4.30 P.M.

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On the following morning (Sept. 25th) the movement of the same cotyledon was again traced in the same manner during 24h.; and a copy of the tracing is here given (Fig. 25). The morning was cold, and the window had been accidentally left open for a short time, which must have chilled the plant ; and this probably prevented it from moving quite as freely as on the previous day ;. for it rose only four and sank only four times during the day, one of the oscillations being very small. At 7.10 a.m., when the first dot was made, the cotyledons were not fully open or awake; they continued to open till about 9 a.m., by which time they had suuk a little beneath the horizon: by 9.30 a.m. they had risen, and then they oscillated up and down ; but the upward and downward lines never quite coincided. At about 4.30 p.m. the great nocturnal rise commenced. At 7 a.m. on the following morning (Sept. 26th) they occupied nearly the same level as on the previous morning, as shown in the diagram: they then began to open or sink in the usual manner. The diagram leads to the belief that the great periodical daily rise and fall does not differ essentially, excepting in amplitude, from the oscillations during the middle of the day.

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Lotus Jacobeus (Leguminose).—The cotyledons of this plant, after the few first days of their life, rise so as to stand almost, though rarely quite, vertically at night. They continue to act in this manner for a long time even after the development of some of the true leaves. With seedlings, 3 inches in height, and bear- ing five or six leaves, they roso at night about 45°. They con- tinued to act thus for about an additional fortnight. Subse- quently they remained horizontal at night, though still green,

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and at last dropped off. Their rising at night so as to stand almost vertically appears to depend largely on temperature ; for when the seedlings were kept in a cool house, though thoy still continued to grow, the cotyledons did not become vertical at night, It is remarkable that the cotyledons do not generally rise at night to any conspicuous extent during the first four or five days after germination; but the period was extremely variable with secdlings kept under the same conditions; and many were observed. Glass filaments with minute triangles of paper were fixed to the cotyledons (13 mm. in breadth) of two seedlings, only 24h. old, and the hypocotyl was secured to a stick; their movements greatly magnified were traced, and they certainly circumnutated the whole time on a small scale, but they did not exhibit any distinct nocturnal and diurnal move- ment. The hypocotyls, when left free, cireamnutated over a large space.

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Another and much older seedling, bearing a half-developed leaf, had its movements traced in a similar manner during the three first days and nights of June; but seedlings at this age appear to be very sensitive to a deficiency of light; they were observed under a rather dim skylight, at a temperature of between 16° to 173° C.; and apparently, in consequence of these conditions, the great daily movement of the cotyledons ceased on the third day. During the first two days they began rising in the early afternoon in a nearly straight line, until between 6 and 7 p.m., when they stood vertically. During the latter part of the night, or more probably in the early morning, they began to fall or open, so that by 6.45 a.m. they stood fully expanded and horizontal. They continued to fall slowly for some time, and during the second day described a single small ellipse, between 9 am. and 2 p.m., in addition to the great diurnal movement. The course pursued during the whole 24h. was far less complex than in the foregoing case of Cassia. On the third morning they fell very much, and then circumnutated on a small scale round the same spot; by 8.20 p.m. they showed no tendency to rise at night. Nor did the cotyledons of any of the many other seedlings in the same pot rise; and so it was on the following night of June 5th. The pot was then taken back into the hot-house, where it was exposed to the sun, and on the succeeding night all the cotyledons rose again to a high angle, but did not stand quite vertically. On each of the above days the line representing the great nocturnal

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rise did not coincide with that of the great diurnal fall, so that narrow ellipses were described, as is the usual rule with circum- nutating organs. The cotyledons are provided with a pulvinus, and its development will hereafter be described. Mimosa pudica (Leguminose).—The cotyledons rise up verti- cally at night, so as to close together. Two seedlings were observed in the greenhouse (temp. 16° to 17°C. or 63° to 65° F.). Their hypocotyls were secured to sticks, and glass filaments bearing little triangles of paper were affixed to the cotyledons of both. Their movements were traced on a vertical glass during 24h. on November 13th. The pot had stood for some time in the same position, and they were chiefly illuminated through the glass-roof. The cotyledons of one of these seedlings moved downward in the morning till 11.30 a.m., and then rose, moving rapidly in the evening until they stood vertically, so that in this case there was simply a single great daily fall and rise. The other seedling behaved rather differently, for it fell in the morn- ing until 11.30 a.m., and then rose, but after 12.10 p.m. again fell; and the great evening rise did not begin until 1.22 p.m. On the following morning this cotyledon had fallen greatly from its vertical position by 8.15 a.m. Two other seedlings (one seven and the other eight days old) had been previously observed under unfavourable circumstances, for they had been brought into a room and placed before a north-east window, where the temperature was between only 56° and 57° F. They had, more- over, to be protected from lateral light, and perhaps were not sufficiently illuminated. Under these circumstances the coty- ledons moved simply downwards from 7 a.m. till 2 p.m., after which hour and during a large part of the night they con- tinued to rise. Between 7 and 8 a.m. on the following morning they fell again; but on this second and likewise on the third day the movements became irregular, and between 3 and 10.30 p.m. they circumnutated to a small extent about the same spot; but they did not rise at night. Nevertheless, on the following night they rose as usual.

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Cytisus frugrans (Leguminose).—Only a few observations were made on this plant. The hypocotyl circumnutated to a con- siderable extent, but in asimple manner—namely, for two hours in one direction, and then much more slowly back again in a zigzag course, almost parallel to the first line, and beyond the starting-point. It moved in the same direction all night, but next morning began to return. The cotyledons continually move both up and down and laterally; but they do not rise up at night in a conspicuous manner.

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Lupinus luteus (Leguminos).—Seedlings of this plant were observed because the cotyledons are so thick (about ‘08 of an inch) that it seemed unlikely that they would move. Our observations were not very successful, as the seedlings are strongly heliotropic, and their cireumnutation could not be accurately observed near a north-east window, although they had been kept during the previous day in the same position. A seedling was then placed in darkness with the hypocotyl secured to a stick; both cotyledons rose a little at first, and then fell during the rest of the day; in the evening between 5 and 6 p.m. they moved very slowly; during the night one continucd to fall and the other rose, though only a little. The tracing was not much magnified, and as the lines were plainly zigzag, the cotyledons must have moved a little laterally, that is, they must have circumnutated.

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