Research methods in ecologyClements, Frederic E. (Frederic Edward)
Science
Research methods in ecology
Clements, Frederic E. (Frederic Edward)
Plant ecology; Plant ecology -- Methodology
=88. The fate of incident light.= The light present in a habitat and
incident upon a leaf is not all available for photosynthesis. Part is
reflected or screened out by the epidermis, and a certain amount passes
through the chlorenchym, except in very thick leaves. The light absorbed
is by far the greatest in the majority of species. Many plants with
dense coatings of hairs reflect or withhold more light than they absorb,
and the amount of light reflected by a thick cuticule is likewise great.
As light is imponderable, the actual amount absorbed or reflected by the
leaf can not be determined. It is possible, however, to express this in
terms of the total amount received, by means of readings with solio
paper, and the knowledge thus obtained is of great importance in
interpreting the modifications of certain types of leaves. For example,
a leaf with a densely hairy epidermis may receive light of the full
intensity, 1; the amount reflected or screened out by the hairs may be
95 per cent of this, the amount absorbed 5 per cent, and that
transmitted, nil. In the majority of cases, however, the absorbed light
is considerably more than the amount reflected or transmitted.
[Illustration: Fig. 14. Leaf print: exposed 10 m., 11 A.M. August 20.
The leaves are from sun and shade forms of _Bursa bursa-pastoris_, _Rosa
sayii_, _Thalictrum sparsiflorum_, and _Machaeranthera aspera_. In each
the shade leaf prints more deeply.]
=89. Methods of determination.= If results are to be of value, reflected
and transmitted light must be determined in the habitat of the plant
simultaneously with the total light which a leaf receives. An
approximation of the light reflected from a leaf surface is secured by
placing the photometer so that the light reflected is thrown upon the
solio strip. A much more satisfactory method, however, is to determine
it in connection with the amount of light transmitted through the
epidermis. This is done by stripping a piece of epidermis from the upper
surface of the leaf and placing it over the slit in the photometer for
an exposure. An exposure in the full light of the habitat is made
simultaneously with another photometer, or immediately afterward upon
the same strip. When the epidermis is not too dense, both exposures are
permitted to reach the same tint, and the relation between them is
precisely that of their lengths of exposure. Ordinarily the two
exposures are made absolutely simultaneous by placing the epidermis over
half of the opening, leaving the other half to record the full light
value, and the results, or _epidermis prints_, are referred to a
multiple standard. The difference between the two values thus obtained
represents the amount of reflected light together with that screened by
the epidermis. The amount of light transmitted through the leaf may be
measured in the same way by using the leaf itself in place of the
epidermis alone. The time of exposure is necessarily long, however, and
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