Hormones and Heredity: A Discussion of the Evolution of Adaptations and the Evolution of SpeciesCunningham, J. T. (Joseph Thomas)
Science
Hormones and Heredity: A Discussion of the Evolution of Adaptations and the Evolution of Species
Cunningham, J. T. (Joseph Thomas)
Endocrinology; Heredity; Hormones; Mendel's law
The two branches of biological study which we are contrasting cannot,
however, be completely separated even by those whose studies are most
specialised. In Bionomics it is necessary to distinguish the types which
are observed, and often even the species, as may be illustrated by the
fact that controversies occasionally arise among amateur and even
professional fishermen on the question whether dog-fishes are viviparous
or oviparous, the fact being that some species are the one and others the
other, or the fact that the harmless slow-worm and ring-snake are dreaded
and killed in the belief that they are venomous snakes. Taxonomics, on the
other hand, must take account of the sex of its specimens, and the changes
of structure that an individual undergoes in the course of its life, and
of the different types that may be normally produced from the same
parents, otherwise absurd errors are perpetrated. The young, the male, and
the female of the same species have frequently been described under
different names as distinct species or even genera. For example, the larva
of marine crabs was formerly described as a distinct genus under the name
of _Zoaea_, and in the earlier part of the nineteenth century a lively
controversy on the question was carried on between a retired naval surgeon
who hatched _Zoaea_ from the eggs of crabs, and an eminent authority who
was Professor at Oxford and a Fellow of the Royal Society, and who
maintained that _Zoaea_ was a mature and independent form. In the end
taxonomy had to be altered so as to conform with the fact of development,
and the name _Zoaea_ disappeared altogether as that of an independent
genus, persisting only as a convenient term for an important larval stage
in the development of crabs.
These two kinds of study give us a knowledge of the animals now living.
But we find it a universal rule that the individual animal is transitory,
that the duration of life, though varying from a few weeks to more than a
century, is limited, and that new individuals arise by reproduction, and
we have no evidence that the series of successive generations has ever
been interrupted; that is to say, the series in any given individual or
species may come to an end; species may be exterminated, but we know of no
instance of individuals coming into existence except by the process of
reproduction or generation from pre-existing individuals. Further, we know
from the evidence of fossil remains that the animals existing in former
periods were very different from those existing now, and that many of the
existing forms, such as man, mammals, birds, bony fishes, can only be
traced back in the succession of stratified rocks to the later strata or
to those about the middle of the series, evidence of their existence in
the periods represented by the most ancient strata being entirely absent.
Existing types then must have arisen by evolution, by changes occurring in
the succession of generations.
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