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 — John Shaqi
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
I have recently obtained numerous additional examples from the beds
holding Eozoon at St. Pierre, on the Ottawa. They occur at this place
on the surface of layers of the limestone in vast numbers, as if they
had been growing separately on the bottom, or had been drifted over
it by currents. These we shall further discuss hereafter. Such was
the general mode of growth of Eozoon, and we may now consider more in
detail some questions as to its gigantic size, its precise mode of
nutrition, the arrangement of its parts, its relations to more modern
forms, and the effects of its growth in the Laurentian seas. In the
meantime a study of our illustration, Plate IV., which is intended as a
magnified restoration of the animal, will enable the reader distinctly
to understand its structure and probable mode of growth, and to avail
himself intelligently of the partial representations of its fossilized
remains in the other plates and woodcuts.
[Illustration: Fig. 18. _Minute Foraminiferal forms from the Laurentian
of Long Lake._
Highly magnified. (_a._) Single cell, showing tubulated wall. (_b, c._)
Portions of same more highly magnified. (_d._) Serpentine cast of a
similar chamber, decalcified, and showing casts of tubuli.]
With respect to its size, we shall find in a subsequent chapter that
this was rivalled by some succeeding animals of the same humble type
in the Silurian age; and that, as a whole, foraminiferal animals have
been diminishing in size in the lapse of geological time. It is indeed
a fact of so frequent occurrence that it may almost be regarded as
a law of the introduction of new forms of life, that they assume in
their early history gigantic dimensions, and are afterwards continued
by less magnificent species. The relations of this to external
conditions, in the case of higher animals, are often complex and
difficult to understand; but in organisms so low as Eozoon and its
allies, they lie more on the surface. Such creatures may be regarded
as the simplest and most ready media for the conversion of vegetable
matter into animal tissues, and their functions are almost entirely
limited to those of nutrition. Hence it is likely that they will be
able to appear in the most gigantic forms under such conditions as
afford them the greatest amount of pabulum for the nourishment of
their soft parts and for their skeletons. There is reason to believe,
for example, that the occurrence, both in the chalk and the deep-sea
mud, of immense quantities of the minute bodies known as Coccoliths
along with Foraminifera, is not accidental. The Coccoliths appear to
be grains of calcareous matter formed in minute plants adapted to a
deep-sea habitat; and these, along with the vegetable and animal debris
constantly being derived from the death of the living things at the
surface, afford the material both of sarcode and shell. Now if the
Laurentian graphite represents an exuberance of vegetable growth in
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