The Romance of Plant Life: Interesting Descriptions of the Strange and Curious in the Plant WorldElliot, G. F. Scott (George Francis Scott)
Science
The Romance of Plant Life: Interesting Descriptions of the Strange and Curious in the Plant World
Elliot, G. F. Scott (George Francis Scott)
Plants
Kerner von Marilaun[93] also has remarked a similar protective
arrangement in _Gleditschia chinensis_ and in the Wild Pear. Trees
of the latter, when they are young, "bristle with the spines into
which the ends of the woody branches are transformed"; but tall trees
twelve to fifteen feet high are entirely without thorns!
[93] _l.c._, vol. I, p. 433.
It is when one meets coincidences of this nature that the full
meaning of plant life begins to dawn upon the mind.
How is it that the plant knows the time to produce its spines, and
the time to refrain from doing so?
There are certain queer facts that have been given on good authority
as to the causes which tend to produce thorniness and spininess.
Linnæus, _Philos. Bot._, p. 215, § 272, says:--
"Spinosae arbores cultura saepius deponunt spinas in hortis."
Lothelier found that Barberries grown in a moist atmosphere had no
spiny leaves, and that the thorns were far less woody under those
conditions, whilst in a perfectly arid and dry atmosphere only spines
were formed; a strong light also tended to produce spines.
Professor Sickenberger grew a desert plant (_Zilla myagroides_) in
the Botanic Garden at Cairo, and found that its spines were much
weaker and more slender than the strong rigid thorns which cover it
in its natural desert.
Professor Henslow[94] found that the spiny form of the Rest Harrow,
when grown in a rich soil with an abundance of water, gradually loses
its spines. All these experiments certainly show that a dry desert
sort of life, and possibly strong sunlight, favour the development of
spines and thorns.
[94] _Origin of Plant Structures_, pp. 38-40.
Of this there cannot be any reasonable doubt, for the extraordinary
quantity of thorny, spiny things in deserts shows that there must be
some connexion between such a life and their production (see Chapter
X.). In such places animals are always abundant. But these hollies,
pears, and other plants show exactly the opposite to what we should
expect. It is when the head of the young holly reaches the sunlight
and feels the wind that its leaves become harmless!
If one remembers the case of the young larch and its goat enemies on
page 181, it is perhaps possible to think that the lower branches
and twigs were for untold generations exposed to laceration and
biting. Thus, suffering from the loss of water by these regular
annual wounds, the leaves developed their spines in response. So far,
belief is not more difficult than it is with regard to the origin
of any variety. But whenever, by reversion to their ancestral type,
the original not-spiny leaves developed on the top of a tree, that
tree would have an advantage, for every leaf on it would be more
economically produced; a smooth leaf would not require to spend food
in order to make spines. Such trees, spiny below and smooth above,
would be best fitted to survive, healthier and more vigorous, and in
the end would leave more descendants.
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