Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
The gastrulation of the primitive fishes or selachii (sharks and rays)
has been carefully studied of late years by Ruckert, Rabl, and H.E.
Ziegler in particular, and is very important in the sense that this
group is the oldest among living fishes, and their gastrulation can be
derived directly from that of the cyclostoma by the accumulation of a
large quantity of food-yelk. The oldest sharks (Cestracion) still have
the unequal segmentation inherited from the cyclostoma. But while in
this case, as in the case of the amphibia, the small ovum completely
divides into cells in segmentation, this is no longer so in the great
majority of the selachii (or Elasmobranchii). In these the
contractility of the active protoplasm no longer suffices to break up
the huge mass of the passive deutoplasm completely into cells; this is
only possible in the upper or dorsal part, but not in the lower or
ventral section. Hence we find in the primitive fishes a blastula with
a small eccentric segmentation-cavity (Figure 1.55 b), the wall of
which varies greatly in composition. The circular border of the
germinal disk which connects the roof and floor of the
segmentation-cavity corresponds to the border-zone at the equator of
the amphibian ovum. In the middle of its hinder border we have the
beginning of the invagination of the primitive gut (Figure 1.56 ud);
it extends gradually from this spot (which corresponds to the
Rusconian anus of the amphibia) forward and around, so that the
primitive mouth becomes first crescent-shaped and then circular, and,
as it opens wider, surrounds the ball of the larger food-yelk.
Essentially different from the wide-mouthed discoid gastrula of most
of the selachii is the narrow-mouthed discoid gastrula (or
epigastrula) of the amniotes, the reptiles, birds, and monotremes;
between the two--as an intermediate stage--we have the amphigastrula
of the amphibia. The latter has developed from the amphigastrula of
the ganoids and dipneusts, whereas the discoid amniote gastrula has
been evolved from the amphibian gastrula by the addition of food-yelk.
This change of gastrulation is still found in the remarkable ophidia
(Gymnophiona, Coecilia, or Peromela), serpent-like amphibia that live
in moist soil in the tropics, and in many respects represent the
transition from the gill-breathing amphibia to the lung-breathing
reptiles. Their embryonic development has been explained by the fine
studies of the brothers Sarasin of Ichthyophis glutinosa at Ceylon
(1887), and those of August Brauer of the Hypogeophis rostrata in the
Seychelles (1897). It is only by the historical and comparative study
of these that we can understand the difficult and obscure gastrulation
of the amniotes.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account