A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate 1-epimerase (ZmG6PE) gene, which responds to low-phosphorus (LP) stress and regulates yield in maize’s recombinant inbred lines (RILs). However, the relationship of ZmG6PE with phosphorus and yield remained elusive. This study aimed to elucidate the underlying response mechanism of the ZmG6PE gene to LP stress and its consequential impact on maize yield. The analysis indicated that ZmG6PE required the Aldose_epim conserved domain to maintain enzyme activity and localized in the nucleus and cell membrane. The zmg6pe mutants showed decreased biomass and sugar contents but had increased starch content in leaves under LP stress conditions. Combin...
Phosphorus deficiency limits plant growth and development. To better understand the mechanisms behin...
Phosphate deficiency is one of the leading causes of crop productivity loss. Phospholipid degradatio...
Phosphorus (P) deficiency is one of the most critical factors for plant growth and productivity, inc...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
Phosphorus (P) is an essential plant nutrient, and deficiency of P is one of the most important fact...
AbstractMaize (Zea mays L.) is an important food and energy crop, and low phosphate (Pi) availabilit...
Phosphorus deficiency limits plant growth and development. To better understand the mechanisms behin...
Phosphate deficiency is one of the leading causes of crop productivity loss. Phospholipid degradatio...
Phosphorus (P) deficiency is one of the most critical factors for plant growth and productivity, inc...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
A previous metabolomic and genome-wide association analysis of maize screened a glucose-6-phosphate ...
Phosphorus (P) is an essential plant nutrient, and deficiency of P is one of the most important fact...
AbstractMaize (Zea mays L.) is an important food and energy crop, and low phosphate (Pi) availabilit...
Phosphorus deficiency limits plant growth and development. To better understand the mechanisms behin...
Phosphate deficiency is one of the leading causes of crop productivity loss. Phospholipid degradatio...
Phosphorus (P) deficiency is one of the most critical factors for plant growth and productivity, inc...