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 milk glands in Mammals constitute one of the most remarkable of
secondary sexual characters. Except in their functional relations to the
primary organs, the ovaries, and to the uterus, there is nothing sexual
about them. They are parts of the skin, being nothing more or less than
enormous enlargements of dermal glands, either sebaceous or sudoriparous.
Uterine and mammary functions are generally regarded as essentially female
characteristics, and are included in the popular idea of the sex of woman.
Scientifically, of course, they are not at all necessary or universal
features of the female sex, but are peculiar to the mammalian class of
Vertebrates in which they have been evolved. Milk glands, then, are
somatic sex-characters common to a whole class, instead of being
restricted to a family like the antlers in Cervidae. There is not the
slightest trace or rudiment of them in other classes of Vertebrates, such
as Birds or Reptiles. They are not actually sexual in their nature, since
their function is to supply food for the young, not to play a part in the
relations of the sexes. What is sexual about them is--firstly, that they
are normally fully developed only in the female, rudimentary in the male;
secondly, that their periodical development and functional activity
depends on the changes which take place in the ovary and uterus. Many
investigators have endeavoured to discover the nature of the nexus between
the latter organs and the milk glands.
That this nexus is of the nature of a hormone is generally agreed, and may
be regarded as having been proved in 1874 when Goltz and Ewald [Footnote:
_Pflügers Archiv,_ ix., 1874.] removed the whole of the lumbo-sacral
portion of the spinal cord of a bitch and found that the mammae in the
animal developed and enlarged in the usual way during pregnancy and
secreted milk normally after parturition. Ribbert [Footnote: _Fortschritte
der Medicin,_ Bd. 7.] in 1898 transplanted a milk gland of a guinea-pig to
the neighbourhood of the ear, and found that its development and function
during pregnancy and at parturition were unaffected. The effective
stimulus, therefore, is not conveyed through the nervous system, but must
be a chemical stimulus passing through the vascular system.
Public-domain text, read in full here on John Shaqi.
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