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
MULTIPLE FISSION OR BROOD-FORMATION.—We may now turn to a new rhythm, in
strong contrast to the former: a cell after having attained a size, often
notably greater than its parents, divides: without any interval for growth,
the daughter-cells again divide, and this may be repeated as many as ten
times, or even more, so as to give rise to a number of small cells—4, 8,
16—1024,[43] etc., respectively. Such an assemblage of small cells so
formed is called a brood, and well deserves this name, for they never
separate until the whole series of divisions is completed. By this process
the number of individuals is rapidly {31}increased, hence it has received
the name of "sporulation." The term spores is especially applied to the
reproductive bodies of Cryptogams, such as Mosses, Fungi, etc.: the
resulting cells are called "spores," "zoospores" if active ("amoebulae" if
provided with pseudopodia, "flagellulae" if flagellate), "aplanospores," if
motionless. We prefer to call them by the general term "brood-cells," the
original cell the "brood-mother-cell," and the process, "multiple fission"
or "brood-formation." As noted, the brood-mother-cell usually attains an
exceptionally large size, and it in most cases passes into a state of rest
before entering on division: thus brood-formation is frequently the
ultimate term of a long series of Spencerian divisions. Two contrasting
periods of brood-formation may occur in the life cycle of some beings,
notably the Sporozoa.[44]
COLONIAL UNION.—In certain cases, the brood-cells instead of separating
remain together to form a "colony"; and this may enlarge itself again by
binary division of its individual cells at their limit of growth. Here,
certain or all of the cells may (either after separation, or in their
places) undergo brood-formation: such cells are often termed "reproductive
cells" in contrast with the "colonial cells."
Some such colonial Protista must have been the starting-points for the
Higher Animals and Plants; probably apocytial Protista were the
starting-points of the Fungi. In the Higher Animals and Plants, the
spermatozoa and the oospheres (the male and female pairing-cells) are alike
the offspring of brood-formation: and the coupled-cell (fertilised egg)
starts its new life by _segmentation_, which is a brood-formation in which
the cells do not separate, but remain in colonial union, to differentiate
in due course into the tissue-cells of the organism.
RETARDED BROOD-FORMATION.—The nuclear divisions may alternate with
cell-divisions, as above stated, or the former may be {32}completed before
the cytoplasm divides; thus the brood-mother-cell becomes temporarily an
apocyte,[45] which is then _resolved_ simultaneously into the 1-nucleate
brood-cells.
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