Research methods in ecologyClements, Frederic E. (Frederic Edward)
Science
Research methods in ecology
Clements, Frederic E. (Frederic Edward)
Plant ecology; Plant ecology -- Methodology
sterile field can rapidly be covered by a vigorous growth of weeds. As
indicated elsewhere, ruderal formations ultimately yield to the native
vegetation, though in regions so completely given over to culture that
native formations are lacking or remote, it is probable that successions
reach their final stage within the group of ruderal plants.
[Illustration: Fig. 68. Spruce forest formation
(_Picea-Pseudotsuga-hylium_), stage VII, the ultimate stage of the talus
succession.]
=322. Succession by the accumulation of humus.= This is the
characteristic reaction of peat bogs and cypress swamps (_oxodia_), in
which the accumulation of vegetable matter is enormous. The plant
remains decompose slowly and incompletely under the water, giving rise
to the various humic acids. These possess remarkable antiseptic
qualities, and have an injurious effect upon protoplasm. They affect the
absorption of water by the root-hairs, though this is also influenced by
poor aeration. The same acids are found in practically all inland
marshes and swamps, but the quantity of decomposing vegetation in many
is not great enough to produce an efficient reaction. Formations of this
type usually start as freshwater swamps. The succession is apparently
hydrostatic, but no thorough study of its stages has as yet been made.
=323. Succession by modifying atmospheric factors.= All layered
formations, forests, thickets, many meadows and wastes, etc., show
reactions of this nature, and are in fact largely or exclusively
determined by them. The reaction is a complex one, though it is clear
that light is the most efficient of the modified factors, and that
humidity, temperature, and wind, while strongly affected, play
subordinate parts. In normal successions, the effect of shade, i. e.,
diffuse light, enters with the appearance of bushes or shrubs, and
becomes more and more pronounced in the ultimate forest stages. The
reaction is exerted chiefly by the facies, but the effect of this is to
cause increasing diffuseness in each successively lower layer, in direct
ratio with the increased branching and leaf expansion of the plants in
the layer just above. In the ultimate stage of many forests, especially
where the facies are reduced to one, the reaction of the primary layer
is so intense as to preclude all undergrowth. Anomalous successions
often owe their origin to the fact that certain trees react in such a
way as to cause conditions in which they produce seedlings with
increasing difficulty, and thus offer a field favorable to the ecesis of
those species capable of enduring the dense shade. Successions of this
kind are almost invariably mesostatic, as it is altogether exceptional
that layered formations are either xerophytic or hydrophytic.
_LAWS OF SUCCESSION_
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