Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitations thus reducing the yield. A number of plant traits have been recommended to ameliorate the effects of water deficits on plant growth and yield. Limitation on maximum transpiration rate (TR) under high vapor pressure deficit (VPD), usually occurs during midday, is often considered as a water conservation trait. The genotypes with this trait are desirable in high VPD environments where water deficits commonly develop in the later part of the growing season. Our objective of the study was to find the genotypic variation for the trait limited TR under high VPD and also to study leaf temperature, water potential, photosynthesis, and stomatal con...
Breeding for drought tolerance can benefit from a better understanding of possible responses of tran...
Water deficit under nearly all field conditions is the major constraint on plant yields. Other than ...
The instantaneous transpiration efficiency (ITE, the ratio of photosynthesis rate to transpiration) ...
Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitatio...
Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitatio...
Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitatio...
Abstract Background Plants respond to changes in vapour pressure deficit (VPD) between the leaf and ...
The objective of this study was to identify physiological traits that could distinguish between cott...
ABSTRACT. The objective of this study was to identify physiological traits that could distinguish be...
Breeding for high yield in hot environments (heat tolerance) has tripled the yield of Pirna cotton s...
Plants with limited transpiration rate (TR) under high vapor pressure deficit (VPD) offer the potent...
This article presents the findings of an extensive research endeavor aimed at comprehending the phys...
Five cotton (Gossypium hirsutum L.) cultivars were grown in the field in Xinjiang, China to evaluate...
Cotton is routinely grown in the hot, irrigated areas of the U.S. Southwest. Extended periods of ext...
Not AvailableSlow-wilting has been observed in several soybean genotypes as a phenotypic response to...
Breeding for drought tolerance can benefit from a better understanding of possible responses of tran...
Water deficit under nearly all field conditions is the major constraint on plant yields. Other than ...
The instantaneous transpiration efficiency (ITE, the ratio of photosynthesis rate to transpiration) ...
Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitatio...
Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitatio...
Many studies have demonstrated that the cotton in warm environments is vulnerable to water-limitatio...
Abstract Background Plants respond to changes in vapour pressure deficit (VPD) between the leaf and ...
The objective of this study was to identify physiological traits that could distinguish between cott...
ABSTRACT. The objective of this study was to identify physiological traits that could distinguish be...
Breeding for high yield in hot environments (heat tolerance) has tripled the yield of Pirna cotton s...
Plants with limited transpiration rate (TR) under high vapor pressure deficit (VPD) offer the potent...
This article presents the findings of an extensive research endeavor aimed at comprehending the phys...
Five cotton (Gossypium hirsutum L.) cultivars were grown in the field in Xinjiang, China to evaluate...
Cotton is routinely grown in the hot, irrigated areas of the U.S. Southwest. Extended periods of ext...
Not AvailableSlow-wilting has been observed in several soybean genotypes as a phenotypic response to...
Breeding for drought tolerance can benefit from a better understanding of possible responses of tran...
Water deficit under nearly all field conditions is the major constraint on plant yields. Other than ...
The instantaneous transpiration efficiency (ITE, the ratio of photosynthesis rate to transpiration) ...