The Story of the Living Machine: A Review of the Conclusions of Modern Biology in Regard; to the Mechanism Which Controls the Phenomena of Living; Activity — John Shaqi
The Story of the Living Machine: A Review of the Conclusions of Modern Biology in Regard; to the Mechanism Which Controls the Phenomena of Living; ActivityConn, H. W. (Herbert William)
Philosophy
The Story of the Living Machine: A Review of the Conclusions of Modern Biology in Regard; to the Mechanism Which Controls the Phenomena of Living; Activity
Conn, H. W. (Herbert William)
Biology
The next step is the most significant of all. It consists in the
splitting of each chromosome into two equal halves. The threads _do not
divide in their middle but split lengthwise_, so that there are formed
two halves identical in every respect. In this way are produced twice
the original number of chromosomes, but all in pairs. The period at
which this splitting of the chromosomes occurs is not the same in all
cells. It may occur, as described, at about the time the asters have
reached the opposite poles of the nucleus, and an equatorial plate is
formed. It is not infrequent, however, for it to occur at a period
considerably earlier, so that the chromosomes are already divided when
they are brought into the equatorial plate.
At some period or other in the cell division this splitting of the
chromosomes takes place. The significance of the splitting is especially
noteworthy. We shall soon find reason for believing that the chromosomes
contain all the hereditary traits which the cell hands down from
generation to generation, and indeed that the chromosomes of the egg
contain all the traits which the parent hands down to the child. Now, if
this chromatin thread consists of a series of units, each representing
certain hereditary characters, then it is plain that the division of the
thread by splitting will give rise to a double series of threads, each
of which has identical characters. Should the division occur _across_
the thread the two halves would be unlike, but taking place as it does
by a _longitudinal splitting_ each unit in the thread simply divides in
half, and thus the resulting half threads each contain the same number
of similar units as the other and the same as possessed by the original
undivided chromosome. This sort of splitting thus doubles the number of
chromosomes, but produces no differentiation of material.
[Illustration: FIG. 31.--Stage showing the two halves of the
chromosomes separated from each other.]
[Illustration: FIG. 32.--Final stage with two nucleii in which
the chromosomes have again assumed the form of a network. The
centrosomes have divided preparatory to the next division, and the cell
is beginning to divide.]
The next step in the cell division consists in the separation of the two
halves of the chromosomes. Each half of each chromosome separates from
its fellow, and moves to the opposite end of the nucleus toward the two
centrosomes (Fig. 31). Whether they are pulled apart or pushed apart by
the spindle fibres is not certain, although it is apparently sure that
these fibres from the centrosomes are engaged in the matter. Certain it
is that some force exerted from the two centrosomes acts upon the
chromosomes, and forces the two halves of each one to opposite ends of
the nucleus, where they now collect and form two _new nucleii_, with
evidently exactly the same number of chromosomes as the original, and
with characters identical to each other and to the original (Fig. 32).
Public-domain text, read in full here on John Shaqi.
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