BACKGROUND: Modifying plant architecture to increase photosynthesis efficiency and reduce shade avoidance response is very important for further yield improvement when crops are grown in high density. Identification of alleles controlling leaf angle in maize is needed to provide insight into molecular mechanism of leaf development and achieving ideal plant architecture to improve grain yield. METHODOLOGY/PRINCIPAL FINDINGS: The gene cloning was done by using comparative genomics, and then performing real-time polymerase chain reaction (RT-PCR) analysis to assay gene expression. The gene function was validated by sequence dissimilarity analysis and QTL mapping using a functional cleaved amplified polymorphism (CAP). CONCLUSIONS: The leaf ang...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
Modifying plant architecture to increase photosynthesis efficiency and reduce shade avoidance respon...
Leaf angle of maize is a fundamental determinant of plant architecture and an important trait influe...
Leaf angle and leaf orientation value are important traits affecting planting density and photosynth...
Leaf and floral architectures contribute significantly to crop yield. Leaf architecture, i.e., leaf ...
Plant architecture is a key factor for high productivity maize because ideal plant architecture with...
Increasing grain yield by the selection for optimal plant architecture has been the key focus in mod...
Leaf width is an important agricultural trait in maize. Leaf development is dependent on cell prolif...
Leaf width is an important agricultural trait in maize. Leaf development is dependent on cell prolif...
Plant architecture is a key factor for high productivity maize because ideal plant architecture with...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
Modifying plant architecture to increase photosynthesis efficiency and reduce shade avoidance respon...
Leaf angle of maize is a fundamental determinant of plant architecture and an important trait influe...
Leaf angle and leaf orientation value are important traits affecting planting density and photosynth...
Leaf and floral architectures contribute significantly to crop yield. Leaf architecture, i.e., leaf ...
Plant architecture is a key factor for high productivity maize because ideal plant architecture with...
Increasing grain yield by the selection for optimal plant architecture has been the key focus in mod...
Leaf width is an important agricultural trait in maize. Leaf development is dependent on cell prolif...
Leaf width is an important agricultural trait in maize. Leaf development is dependent on cell prolif...
Plant architecture is a key factor for high productivity maize because ideal plant architecture with...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
Leaf angle is an important agronomic trait in maize [Zea mays L.]. The compact plant phenotype, with...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...
IntroductionPlants can adapt their growth to optimize light capture in competitive environments, wit...