The Cambridge natural history, Vol. 07 (of 10)Boulenger, George Albert
Science
The Cambridge natural history, Vol. 07 (of 10)
Boulenger, George Albert
Animals
Many Fishes are known to have the power of changing their colours, and in
some the change is rapid. Such changes are due to incident light reflected
from surrounding surfaces, acting through the visual organs and the nervous
system on the differently coloured chromatophores. The latter are capable
of contraction and expansion. Expansion of any particular kind of
chromatophores is accompanied by a diffusion of their pigment—black, red,
orange, or other colour as the case may be—and, according to the number and
distribution of the chromatophores affected, the prevailing tint or tints
of the whole body will be intensified, or only spots, bands, patches, or
flushes of colour will be produced. Conversely, when chromatophores
contract, they may shrink up to mere dots and bring about a diminution in
the vividness of their respective colours, or even an alteration of colour,
seeing that yellow chromatophores become orange when contracted, while
orange or red appear brown or black. Colour changes of this kind may be
artificially brought about. Experiments with Sticklebacks
(_Gastrosteus_)[131], kept in glass dishes with a bottom of black or white
tiles, have shown that the Fishes over the white tiles became partially
bleached, while others with a background of black tiles retained their
original coloration. Bleached Fishes exposed to the white tiles for a
relatively short period (three to ten days) tend to regain their original
colour when subsequently removed to a background of black tiles, but
prolonged exposure to the former conditions (five to six weeks) seems to
render the acquired light colour more or less permanent. {170}The interior
of a Minnow-can is sometimes painted white, so that the bait may assume a
lighter colour, and thus become more conspicuous in the deeper and darker
water where Perch and Pike abound. Hence the colour of a Fish may vary with
its surroundings; and, as will shortly be shown, the capacity for producing
such changes under natural conditions is of the greatest importance to
Fishes in various ways.
Change of coloration may take place through the development of new
chromatophores under the influence of new conditions, and is then
comparatively slow. Artificial illumination of the unpigmented white side
of a Flounder (_Pleuronectes flesus_), by means of a mirror, induces the
formation of chromatophores, and produces a coloration more or less closely
resembling the upper pigmented side.[132] A similar change sometimes occurs
as a natural variation, and is then usually associated with structural
deformity in other respects.
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