Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is difficult because organ temperature may differ from air temperature. Four rice genotypes were planted under irrigated flooded conditions in a similar replicated design in four environments: the relatively humid dry season in the Philippines, the summer season in southern France and the cold-dry and hot-dry seasons in northern Senegal. Panicle temperature was measured by IR photography on ca. 4000 images, complemented with simultaneous monitoring of micro-climatic variables on the floodwater-canopy-air continuum. Spikelet sterility was observed at the population scale at grain maturity, and canopy morphology was also characterized (plant heig...
Aerobic rice production (well-watered, non-flooded) has been proposed to improve water productivity....
Coping with heat stress involves different options that account for the ability of plants to escape ...
Rice spikelet sterility caused by chilling during microspore stage of panicle development is a major...
Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is...
Rice inflorescences are sensitive to chilling and heat, resulting in spikelet sterility. It is not t...
Rice is well adapted to a wide range of climates, but is highly susceptible to heat during flowering...
Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimenta...
Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimenta...
The fit of rice genotypes and copping calendars into an agro-ecological niche is largely a function ...
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 ...
Low temperatures impose restrictions on rice (Oryza sativa L.) production at high latitudes. This st...
Rice florets are susceptible to high-temperature damage at anthesis, but rice production remains sta...
Heat stress damage to the rice production is expected to increase under the projected global warming...
Aerobic rice production (well-watered, non-flooded) has been proposed to improve water productivity....
Coping with heat stress involves different options that account for the ability of plants to escape ...
Rice spikelet sterility caused by chilling during microspore stage of panicle development is a major...
Extreme temperatures cause spikelet sterility in rice and thus yield losses. Predicting sterility is...
Rice inflorescences are sensitive to chilling and heat, resulting in spikelet sterility. It is not t...
Rice is well adapted to a wide range of climates, but is highly susceptible to heat during flowering...
Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimenta...
Rice spikelets become sterile when exposed to high temperatures during flowering. Recent experimenta...
The fit of rice genotypes and copping calendars into an agro-ecological niche is largely a function ...
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 ...
Low temperatures impose restrictions on rice (Oryza sativa L.) production at high latitudes. This st...
Rice florets are susceptible to high-temperature damage at anthesis, but rice production remains sta...
Heat stress damage to the rice production is expected to increase under the projected global warming...
Aerobic rice production (well-watered, non-flooded) has been proposed to improve water productivity....
Coping with heat stress involves different options that account for the ability of plants to escape ...
Rice spikelet sterility caused by chilling during microspore stage of panicle development is a major...