Next, if the factors responsible for sterility were acquired, they
would in all probability be peculiar to certain individuals and would
not readily be distributed to the whole breed. Any member of the breed
also into which _both_ the factors were introduced would drop out of
the pedigree by virtue of its sterility. Hence the evidence that the
various domesticated breeds say of dogs or fowls can when mated
together produce fertile offspring, is beside the mark. The real
question is, Do they ever produce sterile offspring? I think the
evidence is clearly that sometimes they do, oftener perhaps than is
commonly supposed. These suggestions are quite amenable to
experimental tests. The most obvious way to begin is to get a pair of
parents which are known to have had any sterile offspring, and to find
the proportions in which these steriles were produced. If, as I
anticipate, these proportions are found to be definite, the rest is
simple.
In passing, certain other considerations may be referred to. First,
that there are observations favouring the view that the production of
totally sterile cross-breds is seldom a universal property of two
species, and that it may be a matter of individuals, which is just
what on the view here proposed would be expected. Moreover, as we all
know now, though incompatibility may be dependent to some extent on
the degree to which the species are dissimilar, no such principle can
be demonstrated to determine sterility or fertility in general. For
example, though all our Finches can breed together, the hybrids are
all sterile. Of Ducks some species can breed together without
producing the slightest sterility; others have totally sterile
offspring, and so on. The hybrids between several _genera_ of Orchids
are perfectly fertile on the female side, and some on the male side
also, but the hybrids produced between the Turnip (_Brassica napus_)
and the Swede (_Brassica campestris_), which, according to our
estimates of affinity, should be nearly allied forms, are totally
sterile.[73] Lastly, it may be recalled that in sterility we are
almost certainly considering a meristic phenomenon. _Failure to
divide_ is, we may feel fairly sure, the immediate "cause" of the
sterility. Now, though we know very little about the heredity of
meristic differences, all that we do know points to the conclusion
that the less-divided is dominant to the more-divided, and we are thus
justified in supposing that there are factors which can arrest or
prevent cell-division. My conjecture therefore is that in the case of
sterility of cross-breds we see the effect produced by a complementary
pair of such factors. This and many similar problems are now open to
our analysis.
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