Plasticity of Soybean (Glycine Max (l.) Merrill) Root Development Under Mild Water Deficits

Plasticity of Soybean (Glycine Max (l.) Merrill) Root Development Under Mild Water Deficits
Author: Yong He
Publisher:
Total Pages:
Release: 2008
Genre: Electronic dissertations
ISBN:

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Drought is the major abiotic factor limiting soybean yield in the US. Under water deficit conditions, root systems may exhibit developmental plasticity resulting in morphological changes that extend the water-absorbing surface area of the roots. The objective of this study was to identify soybean genotypes which exhibit genetic diversity in root system developmental plasticity in response to water deficits, in order to enable physiological and genetic analyses of the regulatory mechanisms involved. Studies were conducted both at the seedling stage under precisely-controlled water deficits, and during three-week soil drying treatments of plants growing in 1.5 m-deep soil cylinders in controlled-environment chambers. Using the seedling system, 11 soybean genotypes selected from both domestic and Plant Introduction lines were studied. The results showed substantial genetic diversity in the capacity for increased lateral root development (number and total length of roots produced) and in the responses of overall root and shoot growth under water deficit conditions. Studies of the spatial and temporal patterns of lateral root development showed that the promotion of lateral root length under water deficit conditions was due to an increased root production rate rather than earlier initiation or promotion of root elongation. Genotypes with either superior or inferior root plasticity responses at the seedling stage were selected for more detailed studies using the deeper soil cylinder system with more mature plants. The results showed consistent genetic differences in lateral root developmental plasticity under water deficit conditions between the seedling and more mature plant systems.


Plasticity of Soybean (Glycine Max (l.) Merrill) Root Development Under Mild Water Deficits
Language: en
Pages:
Authors: Yong He
Categories: Electronic dissertations
Type: BOOK - Published: 2008 - Publisher:

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Drought is the major abiotic factor limiting soybean yield in the US. Under water deficit conditions, root systems may exhibit developmental plasticity resultin
A Genotypic Comparison of Plasticity of Root System Development During Soil Drying in Soybean (Glycine Max (L.) Merrill)
Language: en
Pages:
Authors: Tracy Cottle Scanlan
Categories: Electronic dissertations
Type: BOOK - Published: 2006 - Publisher:

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Water deficit is responsible for significant losses in soybean (Glycine max (L.) Merrill) yield under dryland conditions. Under drought, increases in root depth
Soybean
Language: en
Pages: 340
Authors: Dora Krezhova
Categories: Science
Type: BOOK - Published: 2011-11-07 - Publisher: BoD – Books on Demand

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This book presents the importance of applying of novel genetics and breading technologies. The efficient genotype selections and gene transformations provide fo
Yield and Development of Soybeans (Glycine Max L.) as Affected by Irrigation with Municipal Wastewater and Well Water
Language: en
Pages: 198
Authors: Michael J. Cordonnier
Categories: Sewage irrigation
Type: BOOK - Published: 1981 - Publisher:

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Response of Soybeans [Glycine Max (L.) Merrill] to Soil Water Stress During Different Stages of Growth
Language: en
Pages: 150
Authors: Clarence Johnson
Categories: Plants
Type: BOOK - Published: 1973 - Publisher:

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