_Maturation, Fertilization and Segmentation._--Polar bodies were first
observed in the eggs of Hexapoda by F. Blochmann in 1887. The two
nuclei are successively divided from the egg nucleus in the usual way,
but they frequently become absorbed in the peripheral protoplasm
instead of being extruded from the egg-cell altogether. It appears
that in parthenogenetic eggs two polar nuclei are formed. According to
A. Petrunkevich (1901-1903), the second polar nucleus uniting with one
daughter-nucleus of the first polar body gives rise to the germ-cells
of the parthenogenetically-produced male. There is no reunion of the
second polar nucleus with the female pronucleus, but, according to the
recent work of L. Doncaster (1906-1907) on the eggs of sawflies, the
number of chromosomes is not reduced in parthenogenetic egg-nuclei,
while, in eggs capable of fertilization, the usual reduction-divisions
occur. Fertilization takes place as the egg is laid, the spermatozoa
being ejected from the spermatheca of the female and making their way
to the protoplasm of the egg through openings (micropyles) in its firm
envelope. The segmentation of the fertilized nucleus results in the
formation of a number of nuclei which arrange themselves around the
periphery of the egg and, the protoplasm surrounding them becoming
constricted, a blastoderm or layer of cells, enclosing the central
yolk, is formed. Within the yolk the nuclei of some "yolk cells" can
be distinguished.
[Illustration: From Nussbaum in Miall and Denny's, _Cockroach_,
Lovell, Reeve & Co.
FIG. 15.--Diagram showing Formation of Germinal Layers. E, ectoderm;
M, inner layer. Magnified.]
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