The Biological Problem of To-day: Preformation Or Epigenesis?: The Basis of a Theory of Organic DevelopmentHertwig, Oscar
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The Biological Problem of To-day: Preformation Or Epigenesis?: The Basis of a Theory of Organic Development
Hertwig, Oscar
Developmental biology; Embryology; Genetics
Even if Weismann were to admit the correctness of these experiments,
perhaps he would not consider that they contradicted his theory of the
germplasm and the segregation of the hereditary mass, but would make a
supplemental hypothesis, which, from the spirit of his theory, could be
none other than this: each of the first cleavage-cells, in addition to its
specific part of the hereditary mass, the part that controls its normal
course of development, possesses an accessory idioplasm, an undivided
fragment of the germplasm, left behind to be ready for unforeseen
emergencies; this part takes command when, in consequence of violence, a
separated part develops into the whole.
But such an assumption does not go far enough, if it be confined to the
first cleavage-cells. By compression of the frog's egg, I have shown that
the pole passing through the blastopore, which coincides with the chief
axis of the future embryo, may assume different relations to the first
segmentation-plane, sometimes coinciding with that, sometimes making a
right or an acute angle with it. It is clear that in each of these cases
the embryonal-cells take a different share in the formation of the regions
of the body, and that they must be fore-endowed with the capacity of
playing different parts.
The developmental history of double monsters enforces the same doctrine;
such are common among the embryos of fish, and rather less common among
chicks. From causes of which we are ignorant two, instead of one, gastrula
stages may arise at separate regions of the germinal layer of the egg.
According to the position of these two invaginations, which may be regarded
as crystallisation-points for the formation of the future embryo, the cells
of the germinal disc will be drawn into the process of development, and,
falling into groups, will build up organs. In relation to this double
gastrulation, there may arise, for instance, four instead of two primitive
ears, eyes, and nasal organs; and these arise from cell-groups, the choice
of which is determined by their relation to the position of the
gastrula-invagination.
From various other experiments, conducted so as to distort the normal
course of development, I have obtained parallel results.
Taking frogs' eggs immediately after fertilisation, I compressed them
strongly between parallel, horizontally placed glass plates. I then
inverted them, so that the vegetative pole came to lie uppermost. In spite
of their unnatural relation to gravity, they developed further, and became
abnormal, quite unsymmetrical embryos.
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