Improving leaf intrinsic water-use efficiency (iWUE), the ratio of photosynthetic CO2 assimilation to stomatal conductance, could decrease crop freshwater consumption. iWUE has primarily been studied under steady-state light, but light in crop stands rapidly fluctuates. Leaf responses to these fluctuations substantially affect overall plant performance. Notably, photosynthesis responds faster than stomata to decreases in light intensity: this desynchronization results in substantial loss of iWUE. Traits that could improve iWUE under fluctuating light, such as faster stomatal movement to better synchronize stomata with photosynthesis, show significant natural diversity in C3 species. However, C4 crops have been less closely investigated. Add...
Biomass sorghum diversity offers the opportunity to develop multipurpose genotypes combining high gr...
Photosynthesis (A) and stomatal function research in grain sorghum (Sorghum bicolor (L.) Moench) is ...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Centro de Investigación Forestal (CIFOR)Despite its importance for crop water use and productivity, ...
Sustaining crop productivity and resilience in water-limited environments and under rising temperatu...
Water scarcity can limit sorghum (Sorghum bicolor (L.) Moench) production in dryland agriculture, bu...
Stomata allow CO2 uptake by leaves for photosynthetic assimilation at the cost of water vapor loss t...
Non-photochemical quenching (NPQ) photoprotective processes are key for protecting photosynthetic ma...
The overall objectives of the study were to determine (i) if genotype variation of stomatal sensitiv...
Previous studies have found that maximum quantum yield of CO2 assimilation (Φ CO2,max,app) declines ...
Sorghum is grown in many parts of the semi-arid tropics in environments where water limitation is co...
Previous studies have found that maximum quantum yield of CO2 assimilation (φCO2,max,app) declines i...
Biomass sorghum diversity offers the opportunity to develop multipurpose genotypes combining high gr...
Photosynthesis (A) and stomatal function research in grain sorghum (Sorghum bicolor (L.) Moench) is ...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Centro de Investigación Forestal (CIFOR)Despite its importance for crop water use and productivity, ...
Sustaining crop productivity and resilience in water-limited environments and under rising temperatu...
Water scarcity can limit sorghum (Sorghum bicolor (L.) Moench) production in dryland agriculture, bu...
Stomata allow CO2 uptake by leaves for photosynthetic assimilation at the cost of water vapor loss t...
Non-photochemical quenching (NPQ) photoprotective processes are key for protecting photosynthetic ma...
The overall objectives of the study were to determine (i) if genotype variation of stomatal sensitiv...
Previous studies have found that maximum quantum yield of CO2 assimilation (Φ CO2,max,app) declines ...
Sorghum is grown in many parts of the semi-arid tropics in environments where water limitation is co...
Previous studies have found that maximum quantum yield of CO2 assimilation (φCO2,max,app) declines i...
Biomass sorghum diversity offers the opportunity to develop multipurpose genotypes combining high gr...
Photosynthesis (A) and stomatal function research in grain sorghum (Sorghum bicolor (L.) Moench) is ...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...