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
If embryology gives no certain sound as to the questions just raised
with reference to the body cavity, still less is it to be hoped that
the remaining questions with reference to the origin of the mesoblast
can be satisfactorily answered. It is clear, in the first place, from
an inspection of the summary given above, that the process of
development of the mesoblast is, in all the higher forms, very much
abbreviated and modified. Not only is its differentiation relatively
deferred, but it does not in most cases originate, as it must have
done to start with, as a more or less continuous sheet, split off from
parts of one or both the primary layers. It originates in most cases
from the hypoblast, and although the considerations already urged
preclude us from laying very great stress on this mode of origin, yet
the derivation of the mesoblast from the walls of archenteric
outgrowths suggests the view that the whole, or at any rate the
greater part, of the mesoblast primitively arose by a process of
histogenic differentiation from the walls of the archenteron or rather
from diverticula of these walls. This view, which was originally put
forward by myself (No. 260), appears at first sight very improbable,
but if the statement of the Hertwigs (No. 270), that there is a large
development of a hypoblastic muscular system in the Actinozoa, is well
founded, it cannot be rejected as impossible. Lankester (No. 279), on
the other hand, has urged that the mode of origin of the mesoblast in
the Echinodermata is more primitive; and that the amoeboid cells which
here give rise to the muscular and connective tissues represent cells
which originally arose from the whole inner surface of the epiblast.
It is, however, to be noted that even in the Echinodermata the
amoeboid cells actually arise from the _hypoblast_, and their mode of
origin may, therefore, be used to support the view that the main part
of the muscular system of higher types is derived from the primitive
hypoblast.
The great changes which have taken place in the development of the
mesoblast would be more intelligible on this view than on the view
that the major part of the mesoblast primitively originated from the
epiblast. The presence of food-yolk is much more frequent in the
hypoblast than in the epiblast; and it is well known that a large
number of the changes in early development are caused by food-yolk.
If, therefore, the mesoblast has been derived from the hypoblast, many
more changes might be expected to have been introduced into its early
development than if it had been derived from the epiblast. At the same
time the hypoblastic origin of the mesoblast would assist in
explaining how it has come about that the development of the nervous
system is almost always much less modified than that of the mesoblast,
and that the nervous system is not, as might, on the grounds of
analogy, have been anticipated, as a rule secondarily developed in the
mesoblast.
Public-domain text, read in full here on John Shaqi.
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