The Cambridge natural history, Vol. 01 (of 10)Hickson, Sydney J. (Sydney John)
Science
The Cambridge natural history, Vol. 01 (of 10)
Hickson, Sydney J. (Sydney John)
Animals
The chromosomes are now completely split, each into its two
daughter-segments, which glide apart (Fig. 7, G, _ep_), and pass each to
its own pole of the spindle, stopping just short of the centrosome (I).
Thus, on the inner side of either centrosome is found an aggregation of
daughter-segments, each of which is sister to one at the opposite pole,
while the number at either pole is identical with that of the segments into
which the old nucleus had resolved itself at the outset. The
daughter-segments shorten and thicken greatly as they diverge to the poles,
and on their arrival crowd close together.
A distinct wall now forms around the aggregated {28}daughter-chromosomes
(J), so as to combine them into a nucleus for the daughter-cell. The
reorganisation of the young nucleus certainly varies in different cases,
and has been ill-studied, probably because of the rapidity of the changes
that take place. The cytoplasm now divides, either tapering into a "waist"
which finally ruptures, or constricting by the deepening of a narrow
annular groove so as to complete the formation and isolation of the
daughter-cells.
We might well compare the cell-division to the halving of a pumpkin or
melon, of which the flesh as a whole is simply divided into two by a
transverse cut, while the seeds and the cords that suspend them are each
singly split to be divided evenly between the two halves of the fruit; the
flesh would represent the cytoplasm, the cords the linin threads of the
nucleus, and the seeds the chromatin granules. In this way the halving of
the nucleus is much more complete and intimate than that of the cytoplasm;
and this is the reason why many biologists have been led to regard the
nuclear segments, and especially their chromatic granules, as the seat of
the hereditary properties of the cell, properties which have to be equally
transmitted on its fission to each daughter-cell.[40] But we must remember
that the linin is also in great part used up in the formation of these
segments, like the cords of our supposed melon; and it is open to us to
regard the halving in this intimate way of the "linin" as the essence of
the process, and that of the chromatin as accessory, or even as only part
of the necessary machinery of the process. The halving or direct splitting
lengthwise of a viscid thread is a most difficult problem from a physical
point of view; and it may well be that the chromatin granules have at least
for a part of their function the facilitation of this process. If such be
the case, we can easily understand the increase in number, and size and
staining power of these granules as cell-division approaches, and their
atrophy or partial disappearance during their long intervening periods of
active cell life. Hence we hesitate to accept the views so commonly
maintained that the chromatin represents a {29}"germ-plasm" or "idioplasm"
of relatively great persistence, which gives the cell its own racial
qualities.[41]
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