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 comparative study of the canal systems of sponges[274] acquires a
greater interest in proportion as the hope of correlating modifications
with increase of efficiency seems to be realised. In a few main issues this
hope may be said to have been realised. The points, so to speak, of a good
canal system are (1) high oscular velocity, which ensures rapid removal of
waste products to a wholesome distance; (2) a slow current without eddies
in the flagellated chambers, to allow of the choanocytes picking up food
particles (see below), and moreover to prevent injury to the delicate
collars of those cells; (3) a small area of choanocytes, and consequent
small expenditure of energy in current production.
It is then at once clear at what a disadvantage the Ascons are placed as
compared with other sponges having canal systems of the second or third
types. Their chamber and oscular currents can differ but slightly, the
difference being obtained merely by narrowing the lumen of the distal
extremity of the body to form the oscular rim. Further, the choanocytes are
{236}acting on a volume of water which they can only imperfectly control,
and it is no doubt due to the necessity of limiting the volume of water
which the choanocytes have to set in motion that the members of the Ascon
family are so restricted in size. The oscular rim is only a special case of
a device adopted by sponges at the very outset of their career, and
retained and perfected when they have reached their greatest heights; the
volume of water passing per second over every cross-section of the path of
the current is of course the same, therefore by narrowing the
cross-sectional area of the path at any point, the velocity of the current
is proportionally increased at that point. The lining of the oscular rim is
of pinacocytes; they determine a smooth surface, offering little frictional
resistance to the current, while choanocytes in the same position would
have been a hindrance, not only by setting up friction, but by causing
irregularities in the motion.
Canal systems of the second type show a double advance upon that of the
Ascons, namely, subdivision of the gastral cavity and much greater length
of the smooth walled exhalant passage. The choanocytes have now a task more
equal to their strength, and, further, there is now a very great inequality
between the total sectional areas of the flagellated chambers and that of
the oscular tube.
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