The works of Francis Maitland Balfour, Volume 3 (of 4) : $b A treatise on comparative embryology: VertebrataBalfour, Francis M. (Francis Maitland)
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The works of Francis Maitland Balfour, Volume 3 (of 4) : $b A treatise on comparative embryology: Vertebrata
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
A cavity very soon appears in the lower layer cells, near the
non-embryonic end of the blastoderm, but the cells afterwards
disappear from the floor of this cavity, which then lies between the
yolk and the lower layer cells (fig. 16 A, _sc_). This cavity is the
segmentation cavity equivalent to that present in Amphioxus, Amphibia,
etc. The chief peculiarity about it is the relatively late period at
which it makes its appearance, and the fact that its roof is formed
both by the epiblast and by the lower layer cells. Owing to the large
size of the segmentation cavity the blastoderm forms a thin layer
above the cavity and a thickened ridge round its edge.
[FIG. 17. LONGITUDINAL SECTION THROUGH THE BLASTODERM OF A
PRISTIURUS EMBRYO OF THE SAME AGE AS FIG. 28 B.
_ep._ epiblast; _er._ embryonic rim; _m._ mesoblast; _al._
mesenteron.]
The epiblast in the next stage is inflected for a small arc at the
embryonic end of the blastoderm, where it becomes continuous with the
lower layer cells; at the same time some of the lower layer cells of
the embryonic end of the blastoderm assume a columnar form, and
constitute the true hypoblast. The portion of the blastoderm, where
epiblast and hypoblast are continuous, forms a projecting structure
which will be called the embryonic rim (fig. 16 B, _er_).
This rim is a very important structure, since it represents the dorsal
portion of the lip of the blastopore of Amphioxus. The space between
it and the yolk represents the commencing mesenteron, of which the
hypoblast on the under side of the lip is the dorsal wall. The ventral
wall of the mesenteron is at first formed solely of yolk held together
by a protoplasmic network with numerous nuclei. The cavity under the
lip becomes rapidly larger (fig. 17, _al_), owing to the continuous
conversion of lower layer cells into columnar hypoblast along an axial
line passing from the middle of the embryonic rim towards the centre
of the blastoderm. The continuous differentiation of the hypoblast
towards the centre of the blastoderm corresponds with the invagination
in Amphioxus. During the formation of the embryonic rim the blastoderm
grows considerably larger, but, with the exception of the formation of
the embryonic rim, retains its primitive constitution.
The segmentation cavity undergoes however important changes. There is
formed below it a floor of lower layer cells, derived partly from an
ingrowth from the two sides, but mainly from the formation of cells
around the nuclei of the yolk (fig. 16). Shortly after the floor of
cells has appeared, the whole segmentation cavity becomes obliterated
(fig. 17).
The disappearance of the segmentation cavity corresponds in point of
time with the formation of the hypoblast by the pseudo-invagination
above described; and is probably due to this pseudo-invagination, in
the same way that the disappearance of the segmentation cavity in
Amphioxus is due to the true invagination of the hypoblast.
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