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
Formerly we regarded these congenital or innate characters as derived from
the parents or inherited, and heredity was the transmission of
constitutional characters from parent to offspring. Now that we fix our
attention on the fertilised ovum or the gametes by which it is formed we
see that the characters are determined by some properties in the
constitution of the gametes. What, then, is heredity? Clearly, it is
merely the development in the offspring of the same characters which were
present in the ova from which the parents developed. When the characters
persist unchanged from generation to generation, we call the process by
which they are continued heredity. When new characters appear, _i.e._ new
characters determined in the ovum not due to changes in the environment,
we call them variations. When a fertilised ovum develops into a new
individual, it divides repeatedly to form a very large number of cells
united into a single mass. Gradually the parts of this mass are
differentiated to form the tissues and organs of the body or soma, but
some of the cells remain in their original condition and become the
reproductive cells which will give rise to the next generation. The
reproductive cells also undergo division and increase in number, and when
they separate from the new individual and unite in fertilisation they
still possess all the determinants of the fertilised ovum from which they
are descended. Heredity thus continues from gamete to gamete, not from
zygote to soma, and then from soma to gamete.
Modern researches have shown that the nucleus, when the cell divides,
assumes the form of a spindle of fibres, associated with which are
distinct bodies called chromosomes, that the number of these chromosomes
where it can be counted is constant for all individuals of the same
species, and that before the gametes are ready for fertilisation two
cell-divisions take place, which result in the reduction of the number of
chromosomes to half the original number. When two gametes unite, the
specific number is restored. Since the male gamete is very small and seems
to contribute to the zygote almost nothing except the chromosomes, which
carry with them all the characters of the male parent, it seems a
necessary conclusion that the chromosomes alone determine the character of
the adult. There are, however, facts which point to an opposite
conclusion.
Public-domain text, read in full here on John Shaqi.
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