Appletons' Popular Science Monthly, December 1898: Volume LIV, No. 2, December 1898 — John Shaqi
Appletons' Popular Science Monthly, December 1898: Volume LIV, No. 2, December 1898Various
Science
Appletons' Popular Science Monthly, December 1898: Volume LIV, No. 2, December 1898
Various
Science -- Periodicals; Technology -- Periodicals
Many species of plants are so plastic and capable of such ready
response to variations in external conditions that they undergo
distinct morphological changes in response to variations in the
intensity of the light. The common potato is an example of this
fact. The edible tubers are simply thickened stems, and the plant
has the habit of storing starch in any stems not acted upon by
the light. The branches arising from the base of the main stem
are generally underneath the surface of the soil, and afford the
proper conditions for tuber formation. Sugar is constructed in the
leaves, carried down the length of the stem, and deposited in the
underground branches as starch. Space is made for the accumulating
store by the multiplication of the thin-walled cells of the pith. If
any of the upper branches should become shaded, they become at once
the focus of converging streams of sugar, and similar enlargement
ensues, resulting in the formation of tubers. Such structures are
occasionally observed in plants grown thickly together.
Vöchting, by a number of most ingenious experiments, has succeeded in
producing tubers on any branch of a potato plant by simply inclosing
the branch in a small dark chamber. As the result of one experiment
the entire main stem springing from a sprouting tuber was converted
into a new tuber nearly as large as the first. The entire plant at
the close of the experiment had the form of a dumb-bell, with the old
tuber as one ball and the new tuber as the other.
The same writer has described important results obtained from a study
of the action of light upon the stems of cactus, consisting of a
number of flattened internodes. When the growing tips of such plants
were allowed to develop in a dark chamber the new internodes grown
were cylindrical in form. Such behavior suggests that these plants
were originally furnished with cylindrical stems and foliar leaves.
The leaves at some time in the history of the plant were found
unsuitable, and gradually atrophied, while the stems were flattened
and extended to take up their functions.
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