Botany; Geotropism; Plants -- Irritability and movements
The following case is interesting in connection with
the root-like nature of the petioles. The radicle of a seedling was cut
off, as it was completely decayed, and the two now separated cotyledons
were planted. They emitted roots from their bases, and continued green
and healthy for two months. The blades of both then withered, and on
removing the earth the bases of the petioles (instead of the radicle)
were found enlarged into little tubers. Whether these would have had
the power of producing two independent plants in the following summer,
we do not know.
In Quercus virens, according to Dr. Engelmann,[9] both the cotyledons
and their petioles are confluent. The latter grow to a length “of an
inch or even more;” and, if we understand rightly, penetrate the
ground, so that they must be geotropic. The nutriment within the
cotyledons is then quickly transferred to the hypocotyl or radicle,
which thus becomes developed into a fusiform tuber. The fact of tubers
being formed by the foregoing three widely distinct plants, makes us
believe that their protection from animals at an early age and whilst
tender, is one at least of the advantages gained by the remarkable
elongation of the petioles of the cotyledons, together with their power
of penetrating the ground like roots under the guidance of geotropism.
[9] ‘Transact. St. Louis Acad. Science,’ vol. iv. p. 190.
The following cases may be here given, as they bear on our present
subject, though not relating to seedlings. The flower-stem of the
parasitic Lathraea squamaria, which is destitute of true leaves, breaks
through the ground as an arch;[10] so does the
flower-stem of the parasitic and leafless Monotropa hypopitys. With
Helleborus niger, the flower-stems, which rise up independently of the
leaves, likewise break through the ground as arches. This is also the
case with the greatly elongated flower-stems, as well as with the
petioles of Epimedium pinnatum. So it is with the petioles of
Ranunculus ficaria, when they have to break through the ground, but
when they arise from the summit of the bulb above ground, they are from
the first quite straight; and this is a fact which deserves notice. The
rachis of the bracken fern (Pteris aquilina), and of some, probably
many, other ferns, likewise rises above ground under the form of an
arch. No doubt other analogous instances could be found by careful
search. In all ordinary cases of bulbs, rhizomes,
root-stocks, etc., buried beneath the ground, the surface is broken by
a cone formed by the young imbricated leaves, the combined growth of
which gives them force sufficient for the purpose.
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