Kernel water relations play a key role in controlling the duration of grain filling. This duration is controlled by the relationship between kernel water and biomass development, as it determines the timing kernels reach a critical percent moisture content (MC, measured on a fresh weight basis) at which biomass accumulation stops. The time in which this critical percent MC is attained can be affected by the timing kernel net water uptake stops (i.e. maximum water content is reached), or by the relationship between water loss and biomass deposition after maximum water content is attained. Which of the two mechanisms could be behind genotypic differences in maize (Zea mays L.) grain-filling duration was unknown. We also studied the relationsh...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The influence of genotype and panicle position on sorghum [Sorghum bicolor (L.) Moench] kernel growt...
Increasing water use efficiency for grain production, WUEg (i.e. the quotient between grain yield an...
Water deficit is a major limiting condition for adaptation of maize in tropical environments. The ai...
Maize (Zea mays L.) kernel weight (KW) response to changes in assimilate availability per kernel dur...
Sowing date (SD) modifies the environmental conditions during the kernel-filling period as well as d...
Several studies have indicated that maize (Zea mays L.) kernel weight is severely affected by heat s...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
Kernel filling is important for achieving yield height and stability. It is firstly followed by the ...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
Yield formation in maize (Zea mays L.) dent hybrids has been directly linked to the rate of plant bi...
In the present study we tested how assimilate availability per kernel at different grain-filling sta...
Maize (Zea mays, L.) grain yield is assumed to be source limited during the flowering period but sin...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The influence of genotype and panicle position on sorghum [Sorghum bicolor (L.) Moench] kernel growt...
Increasing water use efficiency for grain production, WUEg (i.e. the quotient between grain yield an...
Water deficit is a major limiting condition for adaptation of maize in tropical environments. The ai...
Maize (Zea mays L.) kernel weight (KW) response to changes in assimilate availability per kernel dur...
Sowing date (SD) modifies the environmental conditions during the kernel-filling period as well as d...
Several studies have indicated that maize (Zea mays L.) kernel weight is severely affected by heat s...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
Kernel filling is important for achieving yield height and stability. It is firstly followed by the ...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
Yield formation in maize (Zea mays L.) dent hybrids has been directly linked to the rate of plant bi...
In the present study we tested how assimilate availability per kernel at different grain-filling sta...
Maize (Zea mays, L.) grain yield is assumed to be source limited during the flowering period but sin...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The kernel setting of maize varies greatly because of the timing and intensity of water deficits. Th...
The influence of genotype and panicle position on sorghum [Sorghum bicolor (L.) Moench] kernel growt...
Increasing water use efficiency for grain production, WUEg (i.e. the quotient between grain yield an...