The works of Francis Maitland Balfour, Volume 2 (of 4) : $b A treatise on comparative embryology: InvertebrataBalfour, Francis M. (Francis Maitland)
Science
The works of Francis Maitland Balfour, Volume 2 (of 4) : $b A treatise on comparative embryology: Invertebrata
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
There would seem according to Metschnikoff's observations (No. 134) to
be a number of mesoblast cells interposed between the two primary
layers, which he derives from the inner part of the mass of granular
cells.
After invagination the cilia of the hypoblast cells can no longer be
seen, and are probably absorbed; and their disappearance is nearly
coincident with the complete obliteration of the blastopore, an event
which takes place shortly after the attachment of the larva.
Not long after the closure of the blastopore, calcareous spicules make
their appearance in the larva as delicate unbranched rods pointed at
both extremities. They appear to be formed on the mesoblast cells
situated between the epiblast and hypoblast[67]. The larva when once
fixed rapidly grows in length and assumes a cylindrical form (fig. 67
A). The sides of the cylinder are beset with calcareous spicules which
project beyond the surface, and, in addition to the unbranched forms,
spicules are developed with three and four rays as well as some with a
blunt extremity and serrated edge. The extremity of the cylinder
opposite the attached surface is flattened, and, though surrounded by
a ring of four-rayed spicules, is itself free from them. At this
extremity a small perforation is formed leading into the gastric
cavity, which rapidly increases in size and forms an exhalent osculum
(_os._). A series of inhalent apertures is also formed at the
sides of the cylinder. The relative times of appearance of the single
osculum and the smaller apertures are not constant for the different
larvæ. On the central gastrula cavity of the sponge becoming placed in
communication with the external water, the hypoblast cells lining it
become ciliated afresh (fig. 67 B, _en._) and develop the peculiar
collar characteristic of the hypoblast cells of the Spongida (_vide_
fig. 64, _hy._). When this stage of development is reached we have a
fully formed sponge of the type made known by Haeckel as Olynthus.
[67] Metschnikoff was the first to give this account of the
development of the spicules in Sycandra, but Prof. Schulze has
informed me by letter that he has arrived at the same result.
[FIG. 67. THE YOUNG OF SYCANDRA RAPHANUS SHORTLY AFTER THE
DEVELOPMENT OF THE SPICULA. (Copied from Schulze.)
A. View from the side.
B. View from the free extremity.
_os._ osculum; _ec._ epiblast; _en._ hypoblast composed of ciliated
cells. The terminal osculum and lateral pores are represented as
oval white spaces.]
When young examples of Sycandra come in contact shortly after their
attachment they appear to fuse together temporarily or else
permanently. In the latter case colonies are produced by their fusion.
Public-domain text, read in full here on John Shaqi.
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