Episodes of extremely high temperatures (>35°C) may cause a premature cessation of maize kernel growth (i.e., heat stress), depressing crop grain yield. However, little is known about the influence of this constraint on chemical composition of maize kernels, a key trait for end-use related attributes. Four maize genotypes (flint, popcorn, temperate semi-dent, and temperate × tropical semi-dent) with distinctive endosperm types were grown at heated and non-heated temperature regimes during the early or late stages of the effective grain-filling period. Heat stress during early stages decreased both protein and starch contents of kernels, but the impact on the former was lower (up to-42%) than on the latter (up to-50%), resulting in increases...
Final kernel number in the uppermost ear of temperate maize (lea mays L) hybrids is smaller than the...
Maize (Zea mays L.) endosperms with high amylose proportion are harder and denser than endosperms wi...
Improving the mineral concentrations of maize (Zea mays L.) will aid in the reduction of malnutritio...
Postflowering heat stress causes the arrest of kernel growth, increasing kernel protein concentratio...
Heat stress frequently limits grain yield of summer crops. Most research on maize (Zea mays, L.) has...
Several studies have indicated that maize (Zea mays L.) kernel weight is severely affected by heat s...
Temperate and tropical maize differ in their tolerance to heat stress but the ecophysiological bases...
Abstract High temperature (temperature over 35 °C) is an extremely important environmental factor th...
Global warming has increased the occurrence of high temperature stress in plants, including maize, r...
The future challenge will be to produce more maize and other crops, in stressed environments. Two ex...
BACKGROUND: Protein percentage and kernel weight affect the endosperm hardness of maize grains. Howe...
Maize (Zea mays L.) hybrids with tropical genetic background are a promising source of heat stress t...
The future challenge will be to produce more maize and other crops, in stressed environments. Two ex...
Maize (Zea mays, L.) grain yield is assumed to be source limited during the flowering period but sin...
Graduation date: 2006Wheat (Triticum aestivum L.) plants exposed to higher than usual temperatures d...
Final kernel number in the uppermost ear of temperate maize (lea mays L) hybrids is smaller than the...
Maize (Zea mays L.) endosperms with high amylose proportion are harder and denser than endosperms wi...
Improving the mineral concentrations of maize (Zea mays L.) will aid in the reduction of malnutritio...
Postflowering heat stress causes the arrest of kernel growth, increasing kernel protein concentratio...
Heat stress frequently limits grain yield of summer crops. Most research on maize (Zea mays, L.) has...
Several studies have indicated that maize (Zea mays L.) kernel weight is severely affected by heat s...
Temperate and tropical maize differ in their tolerance to heat stress but the ecophysiological bases...
Abstract High temperature (temperature over 35 °C) is an extremely important environmental factor th...
Global warming has increased the occurrence of high temperature stress in plants, including maize, r...
The future challenge will be to produce more maize and other crops, in stressed environments. Two ex...
BACKGROUND: Protein percentage and kernel weight affect the endosperm hardness of maize grains. Howe...
Maize (Zea mays L.) hybrids with tropical genetic background are a promising source of heat stress t...
The future challenge will be to produce more maize and other crops, in stressed environments. Two ex...
Maize (Zea mays, L.) grain yield is assumed to be source limited during the flowering period but sin...
Graduation date: 2006Wheat (Triticum aestivum L.) plants exposed to higher than usual temperatures d...
Final kernel number in the uppermost ear of temperate maize (lea mays L) hybrids is smaller than the...
Maize (Zea mays L.) endosperms with high amylose proportion are harder and denser than endosperms wi...
Improving the mineral concentrations of maize (Zea mays L.) will aid in the reduction of malnutritio...