Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
But when we speak of the cells as the elementary organisms, or
structural units, or “ultimate individualities,” we must bear in mind a
certain restriction of the phrases. I mean, that the cells are not, as
is often supposed, the very lowest stage of organic individuality.
There are yet more elementary organisms to which I must refer
occasionally. These are what we call the “cytodes” (_cytos_ = cell),
certain living, independent beings, consisting only of a particle of _
plasson_—an albuminoid substance, which is not yet differentiated into
caryoplasm and cytoplasm, but combines the properties of both. Those
remarkable beings called the _ monera_—especially the chromacea and
bacteria—are specimens of these simple cytodes. (Compare Chapter XIX.)
To be quite accurate, then, we must say: the elementary organism, or
the ultimate individual, is found in two different stages. The first
and lower stage is the cytode, which consists merely of a particle of
plasson, or quite simple plasm. The second and higher stage is the
cell, which is already divided or differentiated into nuclear matter
and cellular matter. We comprise both kinds—the cytodes and the
cells—under the name of _plastids_ (“formative particles”), because
they are the real builders of the organism. However, these cytodes are
not found, as a rule, in the higher animals and plants; here we have
only real cells with a nucleus. Hence, in these tissue-forming
organisms (both plant and animal) the organic unit always consists of
two chemically and anatomically different parts—the outer cell-body and
the inner nucleus.
In order to convince oneself that this cell is really an independent
organism, we have only to observe the development and vital phenomena
of one of them. We see then that it performs all the essential
functions of life—both vegetal and animal—which we find in the entire
organism. Each of these tiny beings grows and nourishes itself
independently. It takes its food from the surrounding fluid; sometimes,
even, the naked cells take in solid particles at certain points of
their surface—in other words, “eat” them—without needing any special
mouth and stomach for the purpose (cf. Fig. 19).
Further, each cell is able to reproduce itself. This multiplication, in
most cases, takes the form of a simple cleavage, sometimes direct,
sometimes indirect; the simple direct (or “amitotic”) division is less
common, and is found, for instance, in the blood cells (Fig. 10). In
these the nucleus first divides into two equal parts by constriction.
The indirect (or “mitotic”)
cleavage is much more frequent; in this the caryoplasm of the nucleus
and the cytoplasm of the cell-body act upon each other in a peculiar
way, with a partial dissolution (_caryolysis_), the formation of knots
and loops (_mitosis_), and a movement of the halved plasma-particles
towards two mutually repulsive poles of attraction (_caryokinesis,_
Fig. 11.)
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