Darwin and Modern ScienceSeward, A. C. (Albert Charles)
Philosophy
Darwin and Modern Science
Seward, A. C. (Albert Charles)
Darwin, Charles, 1809-1882; Evolution (Biology); Science -- History
(Temperatures in deg C.)
0 to -20 0 to +10 A. +35 to +37 +36 to +41 +42 to +46
(Normal forms)
ichnusoides polaris urticae ichnusa polaris ichnusoides
(nigrita) (nigrita)
antigone fischeri io - fischeri antigone
(iokaste) (iokaste)
testudo dixeyi polychloros erythromelas dixeyi testudo
hygiaea artemis antiopa epione artemis hygiaea
elymi wiskotti cardui - wiskotti elymi
klymene merrifieldi atalanta - merrifieldi klymene
weismanni porima prorsa - porima weismanni
The reader will notice that the aberrations produced at a very low
temperature (from 0 to -20 deg C.) are absolutely identical with
the aberrations produced by exposing the pupae to extremely high
temperatures (42 to 46 deg C.). Moreover the aberrations produced by a
moderately low temperature (from 0 to 10 deg C.) are identical with the
aberrations produced by a moderately high temperature (36 to 41 deg C.)
From these observations Fischer concludes that it is erroneous to speak
of a specific effect of high and of low temperatures, but that there
must be a common cause for the aberration found at the high as well
as at the low temperature limits. This cause he seems to find in the
inhibiting effects of extreme temperatures upon development.
If we try to analyse such results as Fischer's from a physico-chemical
point of view, we must realise that what we call life consists of a
series of chemical reactions, which are connected in a catenary way;
inasmuch as one reaction or group of reactions (a) (e.g. hydrolyses)
causes or furnishes the material for a second reaction or group
of reactions (b) (e.g. oxydations). We know that the temperature
coefficient for physiological processes varies slightly at various parts
of the scale; as a rule it is higher near 0 and lower near 30 deg. But
we know also that the temperature coefficients do not vary equally from
the various physiological processes. It is, therefore, to be expected
that the temperature coefficients for the group of reactions of the type
(a) will not be identical through the whole scale with the temperature
coefficients for the reactions of the type (b). If therefore a certain
substance is formed at the normal temperature of the animal in such
quantities as are needed for the catenary reaction (b), it is not to be
expected that this same perfect balance will be maintained for extremely
high or extremely low temperatures; it is more probable that one group
of reactions will exceed the other and thus produce aberrant chemical
effects, which may underlie the colour aberrations observed by Fischer
and other experimenters.
Public-domain text, read in full here on John Shaqi.
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