Historically, wheat yields in drought-prone Australian environments have been consistently increasing for over a century. There is currently an agreement that approximately half of that increase is attributable to breeding programmes, but their physiological basis remains poorly documented. In this investigation, we hypothesized that limited whole-plant transpiration rate (TR) under high atmospheric vapour pressure deficit (VPD) could result in advantageous water conservation and crop yield increase under south Australian conditions. Therefore, TR response to VPD was measured in the 0.9-3.2 kPa range for a group of 23 wheat cultivars that were released from 1890 to 2008. Consistent with a water-conservation hypothesis, all genotypes display...
In order to satisfy increasing wheat demands, scaling up wheat production will require boosting yiel...
The regulation of plant transpiration was proposed as a key factor affecting transpiration efficienc...
Higher transpiration efficiency (TE) has been proposed as a mechanism to increase crop yields in dry...
Historically, wheat yields in drought-prone Australian environments have been consistently increasin...
Limited-transpiration rate at high evaporative demand (‘LTR’ trait) has potential to improve drought...
Warmer climates are already contributing to significant decreases in wheat (Triticum spp.) yields wo...
The regulation of plant transpiration was proposed as a key factor affecting transpiration efficienc...
Crop water productivity has been receiving special attention in regards to productivity and food sec...
Atmospheric vapor pressure deficit (VPD) is a key component of drought and has a strong influence on...
Producing more food per unit of water has never been as important as it is at present, and the deman...
AbstractWheat productivity is commonly limited by a lack of water in rain-fed farming systems. Given...
Producing more food per unit of water has never been as important as it is at present, and the deman...
Main conclusion Nocturnal transpiration, through its circadian control, plays a role in modulating d...
Increasing evidence indicates that limited transpiration rate (TR) response to high (>3 kPa) vapour ...
Increasing evidence suggests that in crops, nocturnal water use could represent 30% of daytime water...
In order to satisfy increasing wheat demands, scaling up wheat production will require boosting yiel...
The regulation of plant transpiration was proposed as a key factor affecting transpiration efficienc...
Higher transpiration efficiency (TE) has been proposed as a mechanism to increase crop yields in dry...
Historically, wheat yields in drought-prone Australian environments have been consistently increasin...
Limited-transpiration rate at high evaporative demand (‘LTR’ trait) has potential to improve drought...
Warmer climates are already contributing to significant decreases in wheat (Triticum spp.) yields wo...
The regulation of plant transpiration was proposed as a key factor affecting transpiration efficienc...
Crop water productivity has been receiving special attention in regards to productivity and food sec...
Atmospheric vapor pressure deficit (VPD) is a key component of drought and has a strong influence on...
Producing more food per unit of water has never been as important as it is at present, and the deman...
AbstractWheat productivity is commonly limited by a lack of water in rain-fed farming systems. Given...
Producing more food per unit of water has never been as important as it is at present, and the deman...
Main conclusion Nocturnal transpiration, through its circadian control, plays a role in modulating d...
Increasing evidence indicates that limited transpiration rate (TR) response to high (>3 kPa) vapour ...
Increasing evidence suggests that in crops, nocturnal water use could represent 30% of daytime water...
In order to satisfy increasing wheat demands, scaling up wheat production will require boosting yiel...
The regulation of plant transpiration was proposed as a key factor affecting transpiration efficienc...
Higher transpiration efficiency (TE) has been proposed as a mechanism to increase crop yields in dry...