Life's Dawn on Earth: Being the history of the oldest known fossil remains, and their relations to geological time and to the development of the animal kingdomDawson, John William, Sir
History
Life's Dawn on Earth: Being the history of the oldest known fossil remains, and their relations to geological time and to the development of the animal kingdom
Dawson, John William, Sir
Life -- Origin; Paleontology -- Precambrian
The original skeleton or primary cell-wall of most of these creatures
is seen under the microscope to be perforated with innumerable pores,
and is extremely thin. When, however, owing to the increased size of
the shell, or other wants of the creature, it is necessary to give
strength, this is done by adding new portions of carbonate of lime to
the outside, and to these Dr. Carpenter has given the appropriate name
of "supplemental skeleton;" and this, when covered by new growths,
becomes what he has termed an "intermediate skeleton." The supplemental
skeleton is also traversed by tubes, but these are often of larger size
than the pores of the cell-wall, and of greater length, and branched in
a complicated manner. (Fig. 20.) Thus there are microscopic characters
by which these curious shells can be distinguished from those of
other marine animals; and by applying these characters we learn that
multitudes of creatures of this type have existed in former periods of
the world's history, and that their shells, accumulated in the bottom
of the sea, constitute large portions of many limestones. The manner in
which such accumulation takes place we learn from what is now going on
in the ocean, more especially from the result of the recent deep-sea
dredging expeditions. The Foraminifera are vastly numerous, both near
the surface and at the bottom of the sea, and multiply rapidly; and
as successive generations die, their shells accumulate on the ocean
bed, or are swept by currents into banks, and thus in process of time
constitute thick beds of white chalky material, which may eventually
be hardened into limestone. This process is now depositing a great
thickness of white ooze in the bottom of the ocean; and in times past
it has produced such vast thicknesses of calcareous matter as the chalk
and the nummulitic limestone of Europe and the orbitoidal limestone
of America. The chalk, which alone attains a maximum thickness of 1000
feet, and, according to Lyell, can be traced across Europe for 1100
geographical miles, may be said to be entirely composed of shells
of Foraminifera imbedded in a paste of still more minute calcareous
bodies, the Coccoliths, which are probably products of marine
vegetable life, if not of some animal organism still simpler than the
Foraminifera.
Lastly, we find that in the earlier geological ages there existed
much larger Foraminifera than any found in our present seas; and that
these, always sessile on the bottom, grew by the addition of successive
chambers, in the same manner with the smaller species. To some of these
we shall return in the sequel. In the meantime we shall see what claims
Eozoon has to be included among them.
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