Marine biology -- Great Britain; Seashore; Seashore biology
In order to ascertain the general features of a sponge we cannot do
better than select one of the simplest forms from our own shores. If we
place the live animal in a glass vessel of sea water, and examine it
with a suitable magnifying power, we observe a number of minute pores
scattered over its whole surface; and a much larger opening at the free
end. The animal is motionless, and exhibits no signs of life except that
it may contract slightly when touched. The water surrounding the sponge
also appears to be perfectly still, but if we introduce some fine
insoluble powder, such as precipitated chalk, or a drop of a soluble
dye, the motion of the suspended or soluble material will show that the
water is passing into the sponge through all the small pores, and that
it is ejected through the larger opening.
On touching the sponge we observe that it is of a soft, gelatinous
consistence throughout, or if, as is often the case, the body is
supported by a skeleton of greater or less firmness, a gentle
application of the finger will still show that this framework is
surrounded by material of a jelly-like nature. This gelatinous
substance is the animal itself, and a microscopic examination will show
that its body-wall is made up of two distinct layers, the inner
consisting of cells, many of which possess a cilium or whip-like
filament that protrudes from a kind of collar, its free extremity
extending into the body-cavity.
[Illustration: FIG. 65.--SECTION OF A SIMPLE SPONGE]
These minute cilia are the means by which the water currents just
described are set up. By a constant lashing movement they urge the fluid
contained in the body-cavity towards the larger hole, thus causing the
water to flow in through the numerous small pores. This circulation of
sea water through the body-cavity of the sponge is the means by which
the animal is supplied with air and food. Air is, of course, absorbed
from the water by the soft material of the external layer of the body,
but the constant flow of fresh water through the body-cavity enables
this process of respiration to go on with equal freedom in the interior.
The mode of feeding of the sponge is very similar to that of the
_protozoa_. Organic particles that are carried into the body-cavity, on
coming in contact with the cells of the internal layer, are absorbed
into their protoplasm by which they are digested. Thus the sponge may be
compared to a mass of protozoon cells, all united into a common colony
by a more or less perfect coalescing of the cell-substance, some of the
units being modified in structure for the performance of definite
functions. The air and food absorbed by any one cell may pass readily
into the surrounding cells, and thus each one may be said to work for
the common weal.
[Illustration: FIG. 66.--DIAGRAMMATIC SECTION OF A PORTION OF A
COMPLEX SPONGE]
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