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Experimental Control of Soil Water Content in the Vicinity of Root Hairs
Author(s) -
Hsieh J. J. C.,
Gardner W. H.,
Campbell G. S.
Publication year - 1972
Publication title -
soil science society of america journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.836
H-Index - 168
eISSN - 1435-0661
pISSN - 0361-5995
DOI - 10.2136/sssaj1972.03615995003600030017x
Subject(s) - dns root zone , transpiration , root hair , soil water , elongation , water content , water flow , environmental science , water potential , soil science , agronomy , chemistry , botany , biology , geology , materials science , biochemistry , photosynthesis , geotechnical engineering , ultimate tensile strength , gene , metallurgy
A technique for controlling water content in the root hair zone of growing plants has been developed which involves growing plants on a fine screen placed over soil in such a way that only root hairs can extend through the screen into soil beneath. Gamma‐ray attenuation is used to monitor the supply of water in the root hair zone. By means of controlling either the length of a hanging water column or the rate of water supply, the rate of water flow to the soil lamina beneath the screen can be so adjusted as to just offset the loss due to transpiration. A predetermined soil water content can be maintained to within 0.015 cm 3 /cm 3 in the root hair zone of a growing plant. Plant growth was affected by soil water potential. Reduction in elongation rate of corn ( Zea mays L.) leaves was observed at matric potentials higher than −1 bars. Elongation essentially ceased at matric potentials of about −22 to −30 bars within the root hair zone. A large water content gradient existed adjacent to the root hair zone and extended to a depth greater than 10 mm.

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