Being Well-Born: An Introduction to EugenicsGuyer, Michael F. (Michael Frederic)
Philosophy
Being Well-Born: An Introduction to Eugenics
Guyer, Michael F. (Michael Frederic)
Eugenics; Genetics
=Segregation in the Next Generation.--=But now the question arises, what
do such crosses as show dominance transmit to the next generation?
Experiments show regarding any given pair of these alternate characters
that they are set apart again in the succeeding generation, returning in a
definite percentage to the respective grandparental types.
[Illustration: FIG. 17
Diagram showing the scheme of inheritance in guinea-pigs when black and
albino forms are crossed.]
=Dominance Illustrated in Guinea-Pigs.--=In guinea-pigs for example (Fig.
17), when an individual (either male or female) of a black variety, is
crossed with one of a white variety, the F_{1} generation are all black
like the black parent. When these are interbred or bred with other blacks
which have had one black and one white parent, only two visible types of
progeny appear, viz., black and white, and these approximately in the
ratio of three to one.
Analysis by further breeding shows, however, that there are in reality
three types, but since dominance is complete the pure extracted dominant
and the mixed dominant-and-recessive type are indistinguishable to our
eye. That is, while the blacks are three times as numerous as the whites,
two out of every three of these blacks are really hybrid and correspond to
the blue fowls of our former example.
The condition is readily comprehended when expressed diagrammatically
thus:
Generation P Black × White Black × White
| |
Generation F_{1} Black (White) × Black (White)
|
+-------------------------------------+
| | |
Generation F_{2} 1 Black 2 Black (White) 1 White
In other words, the germ-cells of the one original parent (Gen. P) would
contain only determiners for black and that of the other parent would
contain only determiners for white. The condition of the individuals
produced by the cross would be represented by the formula B(W). But these
determiners segregate in the germ-cells of the crossed form, whether it be
male or female, into B and W. Hence half the spermatozoa of the male
hybrid (generation F_{1}) would carry the B determiners and half the W
determiners. The same is true of the mature ova of the female hybrid.
Consequently, in mating there are always four equally possible
combinations, viz., BB, B(W), (W)B, and WW. Since B is always dominant
three out of the four matings would yield black individuals, or in other
words the ratio would be 3:1.
The pure blacks when mated together will breed true in subsequent
generations, likewise the whites, but the blacks carrying white as a
recessive will yield when interbred the same ratio of whites and black as
did their hybrid parents (Fig. 17, p. 75).
Public-domain text, read in full here on John Shaqi.
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