Instrumentation and methods for rapid screening and selection of plants with improved water use efficiency are essential to address current issues of global food and fuel security. A new imaging system that combines chlorophyll fluorescence and thermal imaging has been developed to generate images of assimilation rate (A), stomatal conductance (gs), and intrinsic water use efficiency (WUEi) from whole plants or leaves under controlled environmental conditions. This is the first demonstration of the production of images of WUEi and the first to determine images of gs from themography at the whole-plant scale. Data are presented illustrating the use of this system for rapidly and non-destructively screening plants for alterations in WUEi by c...
With the rapid rise in global population and the challenges caused by climate changes, the maximizat...
Abstract Background Photosynthesis can be roughly separated into biochemical and photochemical proce...
Stomata allow CO2 uptake by leaves for photosynthetic assimilation at the cost of water vapor loss t...
Thermal and chlorophyll fluorescence imaging are powerful tools for the study of spatial and tempora...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Plant responses to drought stress are complex due to various mechanisms of drought avoidance and tol...
Quantitative analysis of chlorophyll fluorescence transients and quenching has evolved rapidly in th...
AbstractIntrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal con...
Photosynthetic efficiency of higher plants dynamically adapts to changing light intensity and is gre...
Review PaperStomatal regulation is a key determinant of plant photosynthesis and water relations, in...
Plants have evolved incredible tools to respond to changing environmental conditions in order to max...
Plant leaves possess 'microscopic valves', called stomata, that enable control of transpirational wa...
Background: Effects of abiotic and biotic stresses on plant photosynthetic performance lead to fitne...
With the rapid rise in global population and the challenges caused by climate changes, the maximizat...
Abstract Background Photosynthesis can be roughly separated into biochemical and photochemical proce...
Stomata allow CO2 uptake by leaves for photosynthetic assimilation at the cost of water vapor loss t...
Thermal and chlorophyll fluorescence imaging are powerful tools for the study of spatial and tempora...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Plant responses to drought stress are complex due to various mechanisms of drought avoidance and tol...
Quantitative analysis of chlorophyll fluorescence transients and quenching has evolved rapidly in th...
AbstractIntrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal con...
Photosynthetic efficiency of higher plants dynamically adapts to changing light intensity and is gre...
Review PaperStomatal regulation is a key determinant of plant photosynthesis and water relations, in...
Plants have evolved incredible tools to respond to changing environmental conditions in order to max...
Plant leaves possess 'microscopic valves', called stomata, that enable control of transpirational wa...
Background: Effects of abiotic and biotic stresses on plant photosynthetic performance lead to fitne...
With the rapid rise in global population and the challenges caused by climate changes, the maximizat...
Abstract Background Photosynthesis can be roughly separated into biochemical and photochemical proce...
Stomata allow CO2 uptake by leaves for photosynthetic assimilation at the cost of water vapor loss t...