The first change the zygote undergoes in all animals is what is
generally called the segmentation or cleavage of the ovum. This consists
essentially of the division of the nucleus into a number of nuclei,
around which the protoplasm sooner or later becomes arranged in the
manner ordinarily spoken of as cellular. This division of the nucleus is
effected by the process called binary fission; that is to say, it first
divides into two, then each of these divides simultaneously again into
two, giving four nuclei; each of these after a pause again
simultaneously divides into two. So the process continues for some time
until the ovum becomes possessed of a large number of nuclei, all of
which have proceeded from the original nucleus by a series of binary
fissions. This division of the nucleus, which constitutes the essential
part of the cleavage of the ovum, continues through the whole of life,
but it is only in the earliest period that it is distinguished by a
distinct name and used to characterize a stage of development. The
nuclear division of cleavage is usually at first a rhythmical process;
all the nuclei divide simultaneously, and periods of nuclear activity
alternate with periods of rest. Nuclear divisions may be said to be of
three kinds, according to the accompanying changes in the surrounding
protoplasm: (1) accompanied by no visible change, e.g. the
multinucleated Protozoon _Actinosphaerium_; (2) accompanied by a
rearrangement of the protoplasm around each nucleus, but not by its
division into two separate masses, e.g. the division which results in
the formation of a colony of Protozoa; (3) accompanied by the division
of the protoplasm into two parts, so that two distinct cells result,
e.g. the divisions by which the free wandering leucocytes are produced,
the reproduction of uninuclear Protozoa, &c. In the cleavage of the ovum
the first two of these methods of division are found, but probably not
the third. At one time it was thought that the nuclear divisions of
cleavage were always of the third kind, and the result of cleavage was
supposed to be a mass of isolated cells, which became reunited in the
subsequent development to give rise to the later connexion between the
tissues which were known to exist. But in 1885 it was noticed that in
the ovum of _Peripatus capensis_ (A. Sedgwick, _Quart. Journ. Mic.
Science_, xxv., 1885, p. 449) the extra-nuclear protoplasm did not
divide in the cleavage of the ovum, but merely became rearranged round
the increasing nuclei; the continuity of the protoplasm was not broken,
but persisted into the later stages of growth, and gave rise to the
tissue-connexions which undoubtedly exist in the adult. This discovery
was of some importance, because it rendered intelligible the unity of
the embryo so far as its developmental processes are concerned, the
maintenance of this unity being somewhat surprising on the previous
view. On further inquiry and examination it was found that the ova of
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account