The works of Francis Maitland Balfour, Volume 1 (of 4) : $b Separate memoirsBalfour, Francis M. (Francis Maitland)
Science
The works of Francis Maitland Balfour, Volume 1 (of 4) : $b Separate memoirs
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
By stage C considerable progress has been made in the formation of the
alimentary canal. Posteriorly it is as flattened and indefinite as during
stage B (Pl. 10, figs. 2_b_ and 2_c_). But in the anterior part of the
embryo the cavity becomes much deeper and narrower, and a floor of cells
begins to be formed for it (Pl. 10, fig. 2); and, finally, in front, it
forms a definite space completely closed in on all sides by cells (Pl. 10,
fig. 2_a_). Two distinct processes are concerned in effecting these changes
in the condition of the alimentary cavity. One of these is a process of
folding off the embryo from the blastoderm. The other is a simple growth of
cells independent of any folding. To the first of these processes the depth
and narrowness of the alimentary cavity is due; the second is concerned in
forming its ventral wall. The combination of the two processes produces the
peculiar triangular section which characterises the anterior closed end of
the alimentary cavity at this stage. The process of the folding off of the
embryo from the blastoderm resembles exactly the similar process in the
embryo bird. The fold by which the constricting off of the embryo is
effected is a perfectly continuous one, but may be conveniently spoken of
as composed of a head fold and two lateral folds.
Of far greater interest than the nature of these folds is the formation of
the ventral wall of the alimentary canal. This, as has been said, is
effected by a growth of cells from the two sides to the middle line
(Pl. 10, fig. 2). The cells for this are however not derived from
pre-existing hypoblast cells, but are formed spontaneously around nuclei of
the yolk. This fact can be determined in a large number of sections, and is
fairly well shewn in Pl. 10, fig. 2, _na_. The cells are formed in the
yolk, as has been already mentioned, by a simple aggregation of protoplasm
around pre-existing nuclei.
The cells being described are in most cases formed close to the
pre-existing hypoblast cells, but often require to undergo a considerable
change of position before attaining their final situation in the wall of
the alimentary canal.
I have already alluded to this feature in the formation of the ventral wall
of the alimentary cavity. Its interest, as bearing on the homology of the
yolk, is considerable, owing to the fact that the so-called yolk-cells of
Amphibians play a similar part in supplying the ventral epithelium of the
alimentary cavity, as do the cells derived from the yolk in Elasmobranchii.
The fact of this feature being common to the yolk-cells of Amphibians and
the yolk of Elasmobranchii, supplies a strong argument in favour of the
homology of the yolk-cells in the one case with the yolk in the other[183].
Public-domain text, read in full here on John Shaqi.
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