Appletons' Popular Science Monthly, September 1899: Vol. LV, May to October, 1899Various
Science
Appletons' Popular Science Monthly, September 1899: Vol. LV, May to October, 1899
Various
Science -- Periodicals; Technology -- Periodicals
It was long, indeed, believed that the same species could not produce
yellow, red, and blue flowers. But this doctrine, to use the words of
Dr. Lindley, "must now be laid up in the limbo of pleasant dreams."
This supposed law is contradicted by the hyacinth, pansy, _Delphinium
cardinale_, and many other plants. Though red and blue coloring never
occurs among the roses, a hyacinth has been seen to produce a
perfectly pink and a perfectly blue blossom on the same truss, and the
_Borraginaceæ_ afford examples of flowers turning from red to blue in
even a short space of time.
Blue is the highest color of the floral world, and is preferred by
bees. Blue flowers are, as a rule, highly specialized both in form and
color, and often possess marvelous mechanisms which aid in
disseminating the pollen. This coloring is very common in the mint and
pulse families, and in this district there are in the former
forty-nine and in the latter sixty-one species of blue flowers. Their
structure is such that few insects besides the long-tongued bees can
gain access to the honey, and in some instances a single species of
flower is visited by a single kind of bee, as one of the larkspurs by
one of the bumblebees. While this high specialization of the flower
may insure intercrossing, it is yet open to many objections, such as
scarcity of proper guests, mechanical imperfections, perforation of
the flowers by bees, and development of the perianth at the expense of
the essential organs.
It is noteworthy that when genera occur containing three or more
species they are seldom all blue or purple; one species at least, and
frequently more than one, is yellow, white, or red. In _Trifolium_,
_T. pratense_ is rose-purple, _T. repens_ white, and _T. agrarium_
yellow. In the genus _Astragalus_ a part of the species are violet or
blue and a part white, and the same is true of _Lespedeza_ and
_Vicia_; in _Lathyrus_ three species are blue-purple, one yellow, and
one yellowish white. It is probably more advantageous in these genera
for a part of the species to be of one color and a part of another
than for all to be blue. When species are closely allied bees tend to
visit them indiscriminately, as has been observed to be true of the
buttercups, _Spiræas_, and golden-rods. During an afternoon the writer
carefully collected the insect visitors to _Solidago bicolor_, our
only cream-colored golden-rod. Both the number of species and of
individuals taken was much larger than upon the yellow-flowered and
more abundant varieties of this genus growing near by. There could be
no doubt that the whitish coloration was beneficial in enabling
insects to distinguish it more readily. Many purplish flowers are
regular, often showing indications of degeneration, are devoid of
honey, and are self-fertilized or adapted to _Diptera_, or, as in
_Hepatica_, which is visited by bees for the pollen, open to a wide
circle of visitors. In the sea purslane (_Sesuvium maritimum_), a
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