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
In biology, as in every other science, we must admit facts even when we
cannot explain them. The facts of what we call gravitation are obvious,
and any attempt to disregard them would result in disaster, yet no
satisfactory explanation of gravitation has yet been discovered: many
theories have been suggested, but no theory has yet been proved to be
true. In the same way it may be necessary to admit that two X chromosomes
result in the development of a female, and one X, or XY chromosomes result
in the development of a male. But Mendelians have omitted to consider what
is meant by male and female. The soma with its male and female somatic
characters has nothing to do with the question, since somatic
sex-differences may be altogether wanting, and moreover, the essential
male character, the formation of spermatozoa, is by the Mendelian
hypothesis due to descent of the male gametes from the original fertilised
or unfertilised _ovum_. The Mendelian theory therefore is that when an
ovum has two X sex-chromosomes it can only after a number of
cell-divisions, at the following reduction division, give rise to ova,
while an ovum containing one X sex-chromosome, or two different, XY,
chromosomes, at the next reduction division gives rise to spermatozoa. The
X sex-chromosome is not in itself either female or male, since, as we have
seen, either ovum or spermatozoon may contain a single X chromosome. The
ovum then with one X chromosome or one X and one Y changes its sex at the
next reduction division and becomes male. In parthenogenetic ova this
happens without conjugation with a spermatozoon at all: in other cases,
since the zygote is compounded of spermatozoon and ovum, we can only say
that in the XX zygote, the ovum developing only ova, the female is
dominant, in the X or XY zygote developing only spermatozoa the male is
dominant. Hermaphrodite animals, as has been pointed out by Correns and
Wilson, cannot be brought under this scheme at all. In the earthworms, for
instance, we have, in every individual developed from a zygote, ova and
spermatozoa developing in different gonads in different parts of the body.
The differentiation here, therefore, must occur in some cell-division
preceding the reduction divisions. Every zygote must have the same
composition, and yet give rise to two sexes in the same individual.
Public-domain text, read in full here on John Shaqi.
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