during karyokinesis. This preparation, then, which is produced entirely by
diffusion, presents a perfect resemblance to the achromatin spindle in
karyokinesis. {91}
[Illustration: FIG. 31.--Diffusion figure representing karyokinesis.
Achromatin spindle between two similar poles of concentration.]
"The spindle of which we give a photograph in Fig. 31 was made by placing
in salt water a drop of the same solution pigmented with blood or Indian
ink, and placing on either side of this central drop a hypertonic drop of
salt solution more lightly coloured. After diffusion had gone on for some
minutes, we obtained the figure which we have photographed. I would draw
your attention to the equatorial plane, which shows that the spindle is not
formed by lines of force passing from one pole to the other, as would be
the case between two poles of contrary sign, but by two forces acting in
opposite directions. On either side the pigment of the central drop has
been drawn towards the hypertonic centre nearest to it. In the median line,
however, the pigment is attracted in opposite directions by equal forces,
and therefore remains undisturbed, marking the position of the equatorial
plane. This observation applies equally to the equatorial plane in natural
karyokinesis, whose existence is thus readily explained.
"It is hardly necessary to insist on the fact that liquid preparations like
these are of extreme delicacy and sensitiveness, and require for their
production, and still more for their photography, the greatest care and
skill, which can only be acquired by long practice. {92}
"We are able to produce by diffusion not only the achromatin spindle, but
also the segmentation of the chromatin, and the division of the nucleus. If
in the saline solution we place a coloured isotonic drop between two
coloured hypertonic drops, all the figures and movements of karyokinesis
appear successively in their due order. The central drop, representing the
nucleus between the two lateral drops or centrosomes, first becomes
granular. Next we see what appears to be a rolled-up ribbon analogous to
the chromatin band, which soon breaks into fragments analogous to the
chromosomes. These arrange themselves around, and are gradually attracted
towards the centrosomes, where they accumulate to form two pigmented
nuclear masses. A partition then makes its appearance in the median line,
and this partition becomes continuous with the boundary of the spheres
around the centrosomes. Finally we have two cells in juxtaposition, each
with its nucleus, its protoplasm, and its enveloping membrane. I have been
able to photograph these successive stages of the segmentation of the
chromatin just as I have those of the achromatin spindle" (Fig. 32).
[Illustration: FIG. 32.--Four successive stages in the production of
artificial karyokinesis by diffusion.]
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