Marine biology -- Great Britain; Seashore; Seashore biology
As we watch the amœba we see that it is continually changing its
shape, sending out temporary prolongations (_pseudopodia_) of its
gelatinous substance from any part, and sometimes using these extended
portions for the purpose of dragging itself along.
Its method of feeding is as remarkable as it is simple. On coming in
contact with any desired morsel, it sends out two pseudopods, one on
each side of the food. These two pseudopods gradually extend round the
food, till, at last, they meet and coalesce on the opposite side of it,
thus completely enclosing it within the body. Any part of the body of
the amœba may thus be converted into a temporary mouth; and, there
being no special cavity to serve the purpose of a stomach, the process
of digestion will proceed equally well in any part of the body except in
the superficial layer, where the protoplasm is of a slightly firmer
consistence than that of the interior. Further, the process of digestion
being over, any portion of the superficial layer may be converted into a
temporary opening to admit of the discharge of indigestible matter.
[Illustration: FIG. 51.--THE AMŒBA, SHOWING CHANGES OF FORM]
[Illustration: FIG. 52.--THE AMŒBA, FEEDING]
The amœba is an omnivorous feeder, but subsists mainly on vegetable
organisms, especially on diatoms and other minute algæ; and the
siliceous skeletons of the former may often be seen within the body of
the animal, under the high power of a microscope.
The multiplication of the amœba is brought about by a process of
fission or division. At first the nucleus divides into two, and then the
softer protoplasm contracts in the middle, and finally divides into two
portions, each of which contains one of the nuclei. The two distinct
animals thus produced both grow until they reach the dimensions of
their common progenitor.
[Illustration: FIG. 53.--THE AMŒBA, DIVIDING]
All the protozoons resemble the amœba in general structure and
function; but while some are even simpler in organisation, others are
more highly specialised. Some, like the amœba, are unicellular
animals; that is, they consist of a single, simple speck of protoplasm;
but others live in colonies, each newly formed cell remaining attached
to its parent cell, until at last a comparatively large compound
protozoon is formed.
The sub-kingdom is divided into several classes, the principal of which,
together with their leading characteristics, are shown in the following
table:--
Public-domain text, read in full here on John Shaqi.
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