The Geological History of PlantsDawson, John William, Sir
Science
The Geological History of Plants
Dawson, John William, Sir
Paleobotany
VEGETATION OF THE LAURENTIAN AND EARLY PALÆOZOIC--QUESTIONS AS TO ALGÆ.
Oldest of all the formations known to geologists, and representing
perhaps the earliest rocks produced after our earth had ceased to be a
molten mass, are the hard, crystalline, and much-contorted rocks named
by the late Sir W. E. Logan Laurentian, and which are largely developed
in the northern parts of North America and Europe, and in many other
regions. So numerous and extensive, indeed, are the exposures of these
rocks, that we have good reason to believe that they underlie all the
other formations of our continents, and are even world-wide in their
distribution. In the lower part of this great system of rocks which, in
some places at least, is thirty thousand feet in thickness, we find no
traces of the existence of any living thing on the earth. But, in the
middle portion of the Laurentian, rocks are found which indicate that
there were already land and water, and that the waters and possibly the
land were already tenanted by living beings. The great beds of limestone
which exist in this part of the system furnish one indication of this. In
the later geological formations the limestones are mostly organic--that
is, they consist of accumulated remains of shells, corals, and other
hard parts of marine animals, which are composed of calcium carbonate,
which the animals obtain directly from their food, and indirectly from
the calcareous matter dissolved in the sea-water. In like manner great
beds of iron-ore exist in the Laurentian; but in later formations the
determining cause of the accumulation of such beds is the partial
deoxidation and solution of the peroxide of iron by the agency of
organic matter. Besides this, certain forms known as _Eozoon Canadense_
have been recognised in the Laurentian limestones, which indicate the
presence at least of one of the lower types of marine animals. Where
animal life is, we may fairly infer the existence of vegetable life as
well, since the plant is the only producer of food for the animal. But
we are not left merely to this inference. Great quantities of carbon
or charcoal in the form of the substance known as graphite or plumbago
exist in the Laurentian. Now, in more recent formations we have deposits
of coal and bituminous matter, and we know that these have arisen from
the accumulation and slow putrefaction of masses of vegetable matter.
Further, in places where igneous action has affected the beds, we find
that ordinary coal has been changed into anthracite and graphite, that
bituminous shales have been converted into graphitic shales, and that
cracks filled with soft bituminous matter have ultimately become changed
into veins of graphite. When, therefore, we find in the Laurentian thick
beds of graphite and beds of limestone charged with detached grains and
crystals of this substance, and graphitic gneisses and schists and veins
of graphite traversing the beds, we recognise the same phenomena that are
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