The Cambridge natural history, Vol. 01 (of 10)Hickson, Sydney J. (Sydney John)
Science
The Cambridge natural history, Vol. 01 (of 10)
Hickson, Sydney J. (Sydney John)
Animals
The cells in the inner mass are classified into (1) undifferentiated cells,
recognised by their nucleus, which possesses a nucleolus; these are the
archaeocytes; (2) differentiated cells, of which the nucleus contains a
chromatin net; these give rise to pinacocytes, collencytes, and
scleroblasts. Some of them form a flat epithelium, which covers the hinder
pole. Some of the scleroblasts already contain spicules. Fixation occurs
very early. The front pole is used for attachment, the pigmented pole
becoming the distal end (Fig. 69). The larva flattens out, the margin of
the attached end is produced into radiating pseudopodial processes. The
flagellated cells retreat to the interior, leaving the inner mass exposed,
and some of its cells thereupon form a flat outer epithelium. This is the
most important process of the metamorphosis; it is followed by a pause in
the outward changes, coinciding in time with rearrangements of the internal
cells to give rise to the canal system; that is to say, lacunae arise in
the inner mass, pinacocytes pass to the surface of the lacunae, and form
their lining; the flagellated cells, which have lain in confusion, become
grouped in small clusters. These become flagellated chambers,
communications are established between the various portions of the canal
system, and its external apertures arise. There is at first only one
osculum. The larvae may be obtained by keeping the parent sponge in a dish
of sea water, shielded from too bright a light, and surrounded by a second
dish of water to keep the temperature constant. They will undergo
{174}metamorphosis in sea water which is constantly changed, and will live
for some days.
We have said that the young sponge has only one osculum. This is the only
organ which is present in unit number, and it is natural to ask whether
perhaps the osculum may not be taken as a mark of the individual; whether
the fistular specimens, for example, of _H. panicea_ may not be solitary
individuals, and the cockscomb and other forms colonies in which the
individuals are merged to different degrees. Into the metaphysics of such a
view we cannot enter here. We must be content to refer to the views of
Huxley and of Spencer on Individuality.
But it is advisable to avoid speaking of a multi-osculate sponge as a
colony of many individuals, even in the sense in which it is usual to speak
of a colony of polyps as formed of individuals. The repetition of oscula is
probably to be regarded as an example of the phenomenon of repetition of
parts, the almost universal occurrence of which has been emphasised by
Bateson.[200] Delage[201] has shown that when two sponge larvae fixed side
by side fuse together, the resulting product has but one osculum. This,
though seeming to bear out our point of view, loses weight in this
connexion, when it is recalled that two Echinoderm larvae fused together
give rise in a later stage to but one individual.
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