IntroductionPlants can adapt their growth to optimize light capture in competitive environments, with branch angle being a crucial factor influencing plant phenotype and physiology. Decreased branch angles in cereal crops have been shown to enhance productivity in high-density plantings. The Tiller Angle Control (TAC1) gene, known for regulating tiller inclination in rice and corn, has been found to control branch angle in eudicots. Manipulating TAC1 in field crops like cotton offers the potential for improving crop productivity.MethodsUsing a homolog-based methodology, we examined the distribution of TAC1-related genes in cotton compared to other angiosperms. Furthermore, tissue-specific qPCR analysis unveiled distinct expression patterns ...
The shape of a plant is largely determined by regulation of lateral branching. Branching architectur...
Abstract Background Plant architecture and the vegetative-reproductive transition have major impacts...
Polyploidy in Gossypium hirsutum conferred different properties from its diploid ancestors under the...
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...
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...
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...
Plant architecture is an important agronomic trait driven by meristematic activities. Indeterminate...
Fruit branch angle (FBA), a pivotal component of cotton plant architecture, is vital for field and m...
Plant architecture is dynamic as plants develop. Although many genes associated with specific plant ...
BACKGROUND: Modifying plant architecture to increase photosynthesis efficiency and reduce shade avoi...
Fruit branch angle (FBA), a pivotal component of cotton plant architecture, is vital for field and m...
Pyramidal-, erect- or upright-growing plant forms are characterized by narrow branch angles of shoot...
The shape of a plant is largely determined by regulation of lateral branching. Branching architectur...
Abstract Background Plant architecture and the vegetative-reproductive transition have major impacts...
Polyploidy in Gossypium hirsutum conferred different properties from its diploid ancestors under the...
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...
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...
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...
Plant architecture is an important agronomic trait driven by meristematic activities. Indeterminate...
Fruit branch angle (FBA), a pivotal component of cotton plant architecture, is vital for field and m...
Plant architecture is dynamic as plants develop. Although many genes associated with specific plant ...
BACKGROUND: Modifying plant architecture to increase photosynthesis efficiency and reduce shade avoi...
Fruit branch angle (FBA), a pivotal component of cotton plant architecture, is vital for field and m...
Pyramidal-, erect- or upright-growing plant forms are characterized by narrow branch angles of shoot...
The shape of a plant is largely determined by regulation of lateral branching. Branching architectur...
Abstract Background Plant architecture and the vegetative-reproductive transition have major impacts...
Polyploidy in Gossypium hirsutum conferred different properties from its diploid ancestors under the...