Due to future requirements for more crop production there will be greater needs to increase yields for crops subjected to water deficits. In recent years, substantial progress has been made with soybean (Glycine max (L.) Merr.) in understanding the water deficit limitation on yield using model assessments, physiological investigations, and plant breeding. This knowledge has been applied in developing higher yielding genotypes. This review examines physiological options and genetic advances made with soybean as possible guides for studies with other crops. Three approaches exist for minimizing the negative impact of water deficit on crop production: (1) conserve soil water, (2) access more water, and (3) overcome special water deficit sensit...
Water deficit is one of the major constraints for soybean production in Vietnam. The soybean breedin...
Drought stress provokes plants to change their growth pattern and biochemical contents to overcome a...
Water uptake by the plant is difficult in saline and water stress condition due to decreasing osmoti...
Drought stress has been identified as the major environmental factor limiting soybean [Glycine max (...
Water is the main factor determining yield performance under drought conditions. Traditional soybean...
Due to high costs of irrigation, limited availability of irrigation water in many locations and/or l...
To increase soybean [Glycine max (L.) Merr.] productivity, it will be necessary to improve yields in...
Advisor: George L. Graef Drought is the most significant abiotic stress affecting agricultural produ...
Drought stress has been identified as the major environmental factor limiting soybean [Glycine max (...
Soybean (Glycine max) productivity is adversely affected by drought stress worldwide, including Viet...
Soybean [Glycine max (L.)] is the most important oilseed and one of the most important and affordabl...
Copyright © 2013 Chien Van Ha et al. is is an open access article distributed under the Creative Com...
AbstractSoybean genotypes show diverse physiological responses to drought, but specific physiologica...
Plants with limited transpiration rate (TR) under high vapor pressure deficit (VPD) offer the potent...
Soybean genotypes show diverse physiological responses to drought, but specific physiological traits...
Water deficit is one of the major constraints for soybean production in Vietnam. The soybean breedin...
Drought stress provokes plants to change their growth pattern and biochemical contents to overcome a...
Water uptake by the plant is difficult in saline and water stress condition due to decreasing osmoti...
Drought stress has been identified as the major environmental factor limiting soybean [Glycine max (...
Water is the main factor determining yield performance under drought conditions. Traditional soybean...
Due to high costs of irrigation, limited availability of irrigation water in many locations and/or l...
To increase soybean [Glycine max (L.) Merr.] productivity, it will be necessary to improve yields in...
Advisor: George L. Graef Drought is the most significant abiotic stress affecting agricultural produ...
Drought stress has been identified as the major environmental factor limiting soybean [Glycine max (...
Soybean (Glycine max) productivity is adversely affected by drought stress worldwide, including Viet...
Soybean [Glycine max (L.)] is the most important oilseed and one of the most important and affordabl...
Copyright © 2013 Chien Van Ha et al. is is an open access article distributed under the Creative Com...
AbstractSoybean genotypes show diverse physiological responses to drought, but specific physiologica...
Plants with limited transpiration rate (TR) under high vapor pressure deficit (VPD) offer the potent...
Soybean genotypes show diverse physiological responses to drought, but specific physiological traits...
Water deficit is one of the major constraints for soybean production in Vietnam. The soybean breedin...
Drought stress provokes plants to change their growth pattern and biochemical contents to overcome a...
Water uptake by the plant is difficult in saline and water stress condition due to decreasing osmoti...