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
Darwin himself answered this question, and brought together many
excellent examples to show that differences, apparently insignificant
because very small, might be of decisive importance for the life of the
possessor. But it is by no means enough to bring forward cases of this
kind, for the question is not merely whether finished adaptations have
selection-value, but whether the first beginnings of these, and whether
the small, I might almost say minimal increments, which have led up
from these beginnings to the perfect adaptation, have also had
selection-value. To this question even one who, like myself, has been
for many years a convinced adherent of the theory of selection, can only
reply: WE MUST ASSUME SO, BUT WE CANNOT PROVE IT IN ANY CASE. It is not
upon demonstrative evidence that we rely when we champion the doctrine
of selection as a scientific truth; we base our argument on quite other
grounds. Undoubtedly there are many apparently insignificant features,
which can nevertheless be shown to be adaptations--for instance, the
thickness of the basin-shaped shell of the limpets that live among the
breakers on the shore. There can be no doubt that the thickness of these
shells, combined with their flat form, protects the animals from the
force of the waves breaking upon them,--but how have they become so
thick? What proportion of thickness was sufficient to decide that of two
variants of a limpet one should survive, the other be eliminated? We can
say nothing more than that we infer from the present state of the shell,
that it must have varied in regard to differences in shell-thickness,
and that these differences must have had selection-value,--no proof
therefore, but an assumption which we must show to be convincing.
For a long time the marvellously complex RADIATE and LATTICE-WORK
skeletons of Radiolarians were regarded as a mere outflow of "Nature's
infinite wealth of form," as an instance of a purely morphological
character with no biological significance. But recent investigations
have shown that these, too, have an adaptive significance (Hacker). The
same thing has been shown by Schutt in regard to the lowly unicellular
plants, the Peridineae, which abound alike on the surface of the ocean
and in its depths. It has been shown that the long skeletal processes
which grow out from these organisms have significance not merely as a
supporting skeleton, but also as an extension of the superficial area,
which increases the contact with the water-particles, and prevents
the floating organisms from sinking. It has been established that the
processes are considerably shorter in the colder layers of the ocean,
and that they may be twelve times as long (Chun, "Reise der Valdivia",
Leipzig, 1904.) in the warmer layers, thus corresponding to the greater
or smaller amount of friction which takes place in the denser and less
dense layers of the water.
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