The Outline of Science, Vol. 1 (of 4): A Plain Story Simply ToldThomson, J. Arthur (John Arthur)
Science
The Outline of Science, Vol. 1 (of 4): A Plain Story Simply Told
Thomson, J. Arthur (John Arthur)
Science
There is what might be called _physiological_ evidence, for many plants
and animals are variable before our eyes, and evolution is going on
around us to-day. This is familiarly seen among domesticated animals and
cultivated plants, but there is abundant flux in Wild Nature. It need
hardly be said that some organisms are very conservative, and that
change need not be expected when a position of stable equilibrium has
been secured.
There is also _anatomical_ evidence of a most convincing quality. In the
fore-limbs of backboned animals, say, the paddle of a turtle, the wing
of a bird, the flipper of a whale, the fore-leg of a horse, and the arm
of a man; the same essential bones and muscles are used to such diverse
results! What could it mean save blood relationship? And as to the two
sets of teeth in whalebone whales, which never even cut the gum, is
there any alternative but to regard them as relics of useful teeth which
ancestral forms possessed? In short, the evolution theory is justified
by the way in which it works.
Sec. 2
Factors in Evolution
If it be said "So much for the _fact_ of evolution, but what of the
_factors_?" the answer is not easy. For not only is the problem the
greatest of all scientific problems, but the inquiry is still very
young. The scientific study of evolution practically dates from the
publication of _The Origin of Species_ in 1859.
Heritable novelties or variations often crop up in living creatures, and
these form the raw material of evolution. These variations are the
outcome of expression of changes in the germ-cells that develop into
organisms. But why should there be changes in the constitution of the
germ-cells? Perhaps because the living material is very complex and
inherently liable to change; perhaps because it is the vehicle of a
multitude of hereditary items among which there are very likely to be
reshufflings or rearrangements; perhaps because the germ-cells have very
changeful surroundings (the blood, the body-cavity fluid, the
sea-water); perhaps because deeply saturating outside influences, such
as change of climate and habitat, penetrate through the body to its
germ-cells and provoke them to vary. But we must be patient with the
wearisome reiteration of "perhaps." Moreover, every many-celled organism
reproduced in the usual way, arises from an egg-cell fertilised by a
sperm-cell, and the changes involved in and preparatory to this
fertilisation may make new permutations and combinations of the living
items and hereditary qualities not only possible but necessary. It is
something like shuffling a pack of cards, but the cards are living. As
to the changes wrought on the body during its lifetime by peculiarities
in nurture, habits, and surroundings, these dents or modifications are
often very important for the individual, but it does not follow that
they are directly important for the race, since it is not certain that
they are transmissible.
Public-domain text, read in full here on John Shaqi.
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