Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
This typical articulation of the two coelom-sacs begins very early in
the lancelet, before they are yet severed from the primitive gut, so
that at first each segment-cavity (us) still communicates by a narrow
opening with the gut, like an intestinal gland. But this opening soon
closes by complete severance, proceeding regularly backwards. The
closed segments then extend more, so that their upper half grows
upwards like a fold between the ectoderm (ak) and neural tube (n), and
the lower half between the ectoderm and alimentary canal (ch; Figure
1.82 d, left half of the figure). Afterwards the two halves completely
separate, a lateral longitudinal fold cutting between them (mk, right
half of Figure 1.82). The dorsal segments (sd) provide the muscles of
the trunk the whole length of the body (1.159): this cavity afterwards
disappears. On the other hand, the ventral parts give rise, from their
uppermost section, to the pronephridia or primitive-kidney canals, and
from the lower to the segmental rudiments of the sexual glands or
gonads. The partitions of the muscular dorsal pieces (myotomes)
remain, and determine the permanent articulation of the vertebrate
organism. But the partitions of the large ventral pieces (gonotomes)
become thinner, and afterwards disappear in part, so that their
cavities run together to form the metacoel, or the simple permanent
body-cavity.
The articulation proceeds in substantially the same way in the other
vertebrates, the craniota, starting from the coelom-pouches. But
whereas in the former case there is first a transverse division of the
coelom-sacs (by vertical folds) and then the dorso-ventral division,
the procedure is reversed in the craniota; in their case each of the
long coelom-pouches first divides into a dorsal (primitive segment
plates) and a ventral (lateral plates) section by a lateral
longitudinal fold. Only the former are then broken up into primitive
segments by the subsequent vertical folds; while the latter (segmented
for a time in the amphioxus) remain undivided, and, by the divergence
of their parietal and visceral plates, form a body-cavity that is
unified from the first. In this case, again, it is clear that we must
regard the features of the younger craniota as cenogenetically
modified processes that can be traced palingenetically to the older
acrania.
We have an interesting intermediate stage between the acrania and the
fishes in these and many other respects in the cyclostoma (the hag and
the lamprey, cf. Chapter 2.21).
(FIGURE 1.163. Frontal (or horizontal-longitudinal) section of a
triton-embryo with three pairs of primitive segments. ch chorda, us
primitive segments, ush their cavity, ak horn plate.)
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