Ancient Plants: Being a Simple Account of the past Vegetation of the Earth and of the Recent Important Discoveries Made in This Realm of NatureStopes, Marie Carmichael
Science
Ancient Plants: Being a Simple Account of the past Vegetation of the Earth and of the Recent Important Discoveries Made in This Realm of Nature
Stopes, Marie Carmichael
Paleobotany
Very strong evidence points to the conclusion that the most primitive
plants of early time were, like the simplest plants of to-day, water
dwellers. Whether in fresh water or the sea is an undecided point, though
opinion seems to incline in general to the view that the sea was the
first home of plant life. It can, however, be equally well, and perhaps
even more successfully argued, that the freshwater lakes and streams were
the homes of the first families from which the higher plants have
gradually been evolved.
For this there is no direct evidence in the rocks, for the minute forms
of the single soft cells assumed by the most primitive types were just
such as one could not expect to be successfully fossilized. Hence the
earliest stages must be deduced from a comparative study of the simplest
plants now living. Fortunately there is much material for this in the
numerous waters of the earth, where swarms of minute types in many stages
of complexity are to be found.
The simplest type of plants now living, which appears to be capable of
evolution on lines which might have led to the higher plants, is that
found in various members of the group of the Protococcoideæ among the
Algæ. The claim of bacteria and other primitive organisms of various
kinds to the absolute priority of existence is one which is entirely
beyond the scope of a book dealing with fossil plants. The early
evolution of the simple types of the Protococcoideæ is also somewhat
beyond its scope, but as they appear to lie on the most direct “line of
descent” of the majority of the higher plants it cannot be entirely
ignored. From the simpler groups of the green Algæ other types have
specialized and advanced along various directions, but among them there
seems an inherent limitation, and none but the protococcoid forms seem to
indicate the possibility of really high development.
[Illustration: Fig. 17.—A Protococcoid Plant consisting of one cell
_p_, Protoplasm; _n_, nucleus; _g_, colouring body or chloroplast; _w_,
cell wall.]
In a few words, a typical example of one of the simple Protococcoideæ may
be described as consisting of a mass of protoplasm in which lie a
recognizable nucleus and a green colouring body or chloroplast, with a
cell wall or skin surrounding these vital structures, a cell wall that
may at times be dispensed with or unusually thickened according as the
need arises. This plant is represented in fig. 17 in a somewhat
diagrammatic form.
In such a case the whole plant consists of one single cell, living
surrounded by the water, which supplies it with the necessary food
materials, and also protects it from drying up and from immediate contact
with any hard or injurious object. When these plants propagate they
divide into four parts, each one similar to the original cell, which all
remain together within the main cell wall for a short time before they
separate.
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