Scientific American Supplement, No. 531, March 6, 1886Various
Science
Scientific American Supplement, No. 531, March 6, 1886
Various
Science -- Periodicals
This wonderful cactus, its colossal proportions, and weird, yet grand,
appearance in the rocky regions of Mexico and California, where it is
found in abundance, have been made known to us only through books of
travel, no large plants of it having as yet appeared in cultivation in
this country. It is questionable if ever the natural desire to see such
a vegetable curiosity represented by a large specimen in gardens like
Kew can be realized, owing to the difficulty of importing large stems in
a living condition; and even if successfully brought here, they survive
only a very short time. To grow young plants to a large size seems
equally beyond our power, as plants 6 inches high and carefully managed
are quite ten years old. When young, the stem is globose, afterward
becoming club-shaped or cylindrical. It flowers at the height of 12
feet, but grows up to four or five times that height, when it develops
lateral branches, which curve upward and present the appearance of an
immense candelabrum, the base of the stem being as thick as a man's
body. The flower, of which a figure is given here, is about 5 inches
long and wide, the petals cream colored, the sepals greenish white.
Large clusters of flowers are developed together near the top of the
stem. A richly colored edible fruit like a large fig succeeds each
flower, and this is gathered by the natives and used as food under the
name of saguarro. A specimen of this cactus 3 feet high may be seen in
the succulent house at Kew.--_B., The Garden_.
* * * * *
HOW PLANTS ARE REPRODUCED.
[Footnote: Read at a meeting of the Chemists' Assistants' Association.
December 16, 1885.]
By C.E. STUART, B.Sc.
In two previous papers read before this Association I have tried to
condense into as small a space as I could the processes of the nutrition
and of the growth of plants; in the present paper I want to set before
you the broad lines of the methods by which plants are reproduced.
Although in the great trees of the conifers and the dicotyledons we have
apparently provision for growth for any number of years, or even
centuries, yet accident or decay, or one of the many ills that plants
are heirs to, will sooner or later put an end to the life of every
individual plant.
Hence the most important act of a plant--not for itself perhaps, but for
its race--is the act by which it, as we say, "reproduces itself," that
is, the act which results in the giving of life to a second individual
of the same form, structure, and nature as the original plant.
The methods by which it is secured that the second generation of the
plant shall be as well or even better fitted for the struggle of life
than the parent generation are so numerous and complicated that I cannot
in this paper do more than allude to them; they are most completely seen
in cross fertilization, and the adaptation of plant structures to that
end.
Public-domain text, read in full here on John Shaqi.
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