Fossil plants, Vol. 1 : $b [A text-book] for students of botany and geologySeward, A. C. (Albert Charles)
Science
Fossil plants, Vol. 1 : $b [A text-book] for students of botany and geology
Seward, A. C. (Albert Charles)
Paleobotany
The term ‘fossil’ suggests to the lay mind a petrifaction or a
replacement by mineral matter of the plant tissues. In the scientific
sense, a fossil plant, that is a plant or part of a plant whether
in the form of a true petrifaction or a structureless mould or
cast, which has been buried in the earth by natural causes, may be
indistinguishable from a piece of recent wood lately fallen from the
parent tree. In the geologically recent peat beds such little altered
fossils (or sub-fossils) are common enough, and even in older rocks
the more resistant parts of plant fragments are often found in a
practically unaltered state. In the leaf impressions on an impervious
clay, the brown-walled epidermis shows scarcely any indication of
alteration since it was deposited in the soft mud of a river’s delta.
Such fossil leaves are common in the English Tertiary beds, and even in
Palaeozoic rocks it is not uncommon to find an impression of a plant
on a bed of shale from which the thin brown epidermis may be peeled
off the rock, and if microscopically examined it will be found to have
retained intact the contours of the cuticularised epidermal cells. A
striking example of a similar method of preservation is afforded by
the so-called paper-coal of Culm age from the Province of Toula in
Russia[86]. In the Russian area the Carboniferous or Permian rocks have
been subjected to little lateral pressure, and unlike the beds of the
same age in Western Europe, they have not been folded and compressed by
widespread and extensive crust-foldings. Instead of the hard seams of
coal there occur beds of a dark brown laminated material, made up very
largely of the cuticles of Lepidodendroid plants.
From such examples we may naturally pass to fossils in which the plant
structure has been converted into carbonaceous matter or even pure
coal. This form of preservation is especially common in plant-bearing
beds at various geological horizons. In other cases, again, some
mineral solution, oxide of iron, talc, and other substances, has
replaced the plant tissues. From the Coal-Measures of Switzerland Heer
has figured numerous specimens of fern fronds and other plants in which
the leaf form has been left on the dark coloured rock surface as a thin
layer of white talcose material[87]. In the Buntersandstone of the
Vosges and other districts the red imperfectly preserved impressions
of plant stems and leaves are familiar fossils[88]; the carbonaceous
substance of the tissues has been replaced by a brown or red oxide of
iron.
[Sidenote: INCRUSTATIONS.]
Plants frequently occur in the form of incrustations; and in fact
incrustations, which may assume a variety of forms, are the commonest
kind of fossil. The action of incrusting springs, or as they are
often termed petrifying springs, is illustrated at Knaresborough, in
Yorkshire, and many other places where water highly charged with
carbonate of lime readily deposits calcium carbonate on objects placed
in the path of the stream.
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