Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimental studies have shown that transpirational cooling and flowering time (within the day) are important factors determining sterility. Extrapolation of the results from these experimental studies to other environments requires an integrated approach through incorporating such effects on spikelet fertility in a crop growth model. Here we review existing fertility functions (fertility as a function of panicle temperature) in different studies, and propose a simple new model that incorporates insights on diurnal patterns of temperature and relative humidity, recent studies on the relation between panicle temperature and sterility, and studies on how...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
Rice is well adapted to a wide range of climates, but is highly susceptible to heat during flowering...
Rice florets are susceptible to high-temperature damage at anthesis, but rice production remains sta...
Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimenta...
Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is...
Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is...
Thermal stress and in particular heat during anthesis causes sterility in rice inflorescences. Rice ...
Thermal stress and in particular heat during anthesis causes sterility in rice inflorescences. Rice ...
Thermal stress and in particular heat during anthesis causes sterility in rice inflorescences. Rice ...
Heat stress damage to the rice production is expected to increase under the projected global warming...
We previously demonstrated that heat-induced spikelet sterility at anthesis could be mitigated by us...
<p>High-temperature during flowering in rice causes spikelet sterility and is a major threat to rice...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
Rice inflorescences are sensitive to chilling and heat, resulting in spikelet sterility. It is not t...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
Rice is well adapted to a wide range of climates, but is highly susceptible to heat during flowering...
Rice florets are susceptible to high-temperature damage at anthesis, but rice production remains sta...
Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimenta...
Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is...
Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is...
Thermal stress and in particular heat during anthesis causes sterility in rice inflorescences. Rice ...
Thermal stress and in particular heat during anthesis causes sterility in rice inflorescences. Rice ...
Thermal stress and in particular heat during anthesis causes sterility in rice inflorescences. Rice ...
Heat stress damage to the rice production is expected to increase under the projected global warming...
We previously demonstrated that heat-induced spikelet sterility at anthesis could be mitigated by us...
<p>High-temperature during flowering in rice causes spikelet sterility and is a major threat to rice...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
Rice inflorescences are sensitive to chilling and heat, resulting in spikelet sterility. It is not t...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
In future climates, greater heat tolerance at anthesis will be required in rice. The effect of high ...
Rice is well adapted to a wide range of climates, but is highly susceptible to heat during flowering...
Rice florets are susceptible to high-temperature damage at anthesis, but rice production remains sta...