Abstract: Maize (Zea mays L.) has limited cold tolerance, and breeding for cold tolerance is a noteworthy bottleneck for reaching the high potential of maize production in temperate areas. In this study, we evaluate a large panel of 836 maize inbred lines to detect genetic loci and candidate genes for cold tolerance at the germination and seedling stages. Genetic variation for cold tolerance was larger than in previous reports with moderately high heritability for most traits. We identified 187 significant single-nucleotide polymorphisms (SNPs) that were integrated into 159 quantitative trait loci (QTL) for emergence and traits related to early growth. Most of the QTL have small effects and are specific for each environment, with the majori...
Improving seed vigor in response to cold stress is an important breeding objective in maize that all...
Maize is gaining impetus in non-traditional and non-conventional seasons such as off-season, primari...
Early vigor, earliness and cold tolerance are the main potential contributions of European maize (Ze...
Breeding for cold tolerance in maize is an important objective in temperate areas. The objective was...
Cold reduces maize (Zea mays L.) production and delays sowings. Cold tolerance in maize is very limi...
Póster presentado en el Congreso celebrado en Saint-Malo, Francia, entre el 22 y el 25 de marzo de 2...
Background: Breeding for cold tolerance in maize promises to allow increasing growth area and produc...
B73 and Mo17 represent the main families of elite maize (Zea mays L.) inbred lines. B73 and Mo17 sig...
Given the importance of early cold tolerance in maize (Zea mays L.), we previously conducted a diver...
Chilling injury owing to low temperatures severely affects the growth and development of maize (Zea ...
Research was conducted to improve our understanding of the genetic control of cold tolerance. Eighty...
Cold in the initial growth stages is an important stress factor for maize grown in regions with a te...
Early maize sowing enables longer growing season with enhanced possibility of achieving higher an...
Improving cold tolerance in maize (Zea mays L.) is an important breeding objective, allowing early s...
In 1988, a full-sib recurrent selection program for improved cold tolerance was initiated in three P...
Improving seed vigor in response to cold stress is an important breeding objective in maize that all...
Maize is gaining impetus in non-traditional and non-conventional seasons such as off-season, primari...
Early vigor, earliness and cold tolerance are the main potential contributions of European maize (Ze...
Breeding for cold tolerance in maize is an important objective in temperate areas. The objective was...
Cold reduces maize (Zea mays L.) production and delays sowings. Cold tolerance in maize is very limi...
Póster presentado en el Congreso celebrado en Saint-Malo, Francia, entre el 22 y el 25 de marzo de 2...
Background: Breeding for cold tolerance in maize promises to allow increasing growth area and produc...
B73 and Mo17 represent the main families of elite maize (Zea mays L.) inbred lines. B73 and Mo17 sig...
Given the importance of early cold tolerance in maize (Zea mays L.), we previously conducted a diver...
Chilling injury owing to low temperatures severely affects the growth and development of maize (Zea ...
Research was conducted to improve our understanding of the genetic control of cold tolerance. Eighty...
Cold in the initial growth stages is an important stress factor for maize grown in regions with a te...
Early maize sowing enables longer growing season with enhanced possibility of achieving higher an...
Improving cold tolerance in maize (Zea mays L.) is an important breeding objective, allowing early s...
In 1988, a full-sib recurrent selection program for improved cold tolerance was initiated in three P...
Improving seed vigor in response to cold stress is an important breeding objective in maize that all...
Maize is gaining impetus in non-traditional and non-conventional seasons such as off-season, primari...
Early vigor, earliness and cold tolerance are the main potential contributions of European maize (Ze...