Research methods in ecologyClements, Frederic E. (Frederic Edward)
Science
Research methods in ecology
Clements, Frederic E. (Frederic Edward)
Plant ecology; Plant ecology -- Methodology
=336. Physiographic symmetry.= The physical symmetry of a habitat
depends upon the distribution of water in it, and this is profoundly
affected by the soil and the physiography. The influence of
precipitation is slight or lacking, as it is nearly uniform throughout
the habitat; the effects of wind and humidity are more localized.
Differences of soil rarely obtain within a single habitat, though often
occurring in a zoned series. The strikingly zonal structure or
arrangement of habitats is nearly always due to differences in
water-content produced by physiographic factors, slope, exposure,
surface, and altitude. The effect of these upon water-content and
humidity is obvious. Wherever appreciable physiographic differences
occur, there will be central areas of excess and deficiency in
water-content, between which there is a symmetrical modification of this
factor. Peaks are typical examples of areas of deficiency, lakes and
oceans of areas of excess. When these areas are extreme and close to
each other, the resulting zonation will be marked; when they are
moderate, particularly if they are widely separated, the zones produced
are obscure. Asymmetry of a habitat or a region practically does not
exist. Central areas of excess and deficiency may be very large and in
consequence fail to seem symmetrical, or the space between them so great
that the symmetry is not conspicuous, but they are everywhere present,
acting as foci for the intervening areas.
The response of vegetation to habitat is so intimate that physiographic
symmetry everywhere produces vegetational symmetry, which finds its
ready expression in plant zones. The reaction of vegetation upon habitat
causes biological symmetry, typical of growth zones and light zones.
From these facts it is clear that zonation will be regularly
characteristic of the vegetative covering. The zonal arrangement of
formations is usually very evident; the zones of a formation are often
obscured, or, where the latter occupies a uniform central area of excess
or deficiency, they are rudimentary or lacking, as in shallow ponds.
Zones are frequently imperfect, though rarely entirely absent in new
soils, such as talus. They are rendered obscure in several ways. In the
initial stages of a succession, as well as in the transitions between
the various stages, the plant population is so scattered, so transient,
or so dense as to respond not at all to a degree of symmetry which
produces marked zonation in later formations. The alternation of
conspicuous species not only causes great interruption of zones, but
often also completely conceals the zonation of other species, such as
the grasses, which, though of more importance in the formation, have a
lower habit of growth. Furthermore, the ecotones of one factor may run
at right angles to those of another, and the resulting series of zones
mutually obscure each other. Finally, such a physiographic feature as a
hill may have its symmetry interrupted by ridges or ravines, which
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