Phototropic leaf movement of plants is an effective mechanism for adapting to light conditions. Light is the major driver of plant photosynthesis. Leaf N is also an important limiting factor on leaf photosynthetic potential. Cotton (Gossypium hirsutum L.) exhibits diaheliotropic leaf movement. Here, we compared the long‐term photosynthetic acclimation of fixed leaves (restrained) and free leaves (allowed free movement) in cotton.The study was financially supported by the National Natural Science Foundation of China (U1203283) and a China Scholarship Council fellowship
Cotton (Gossypium hirsutum L.) net photosynthetic rate (P-N) decreased with leaf age and low irradia...
Leaf photosynthesis is regulated by multiple factors that help the plant to adapt to fluctuating lig...
Publication Inra prise en compte dans l'analyse bibliométrique des publications scientifiques mondia...
Cotton species have adapted to their originated environment by developing different physiological an...
Under severe water stress, leaf wilting is quite general in higher plants. This passive movement can...
Leaf nitrogen content and light intensity affect leaf photosynthesis. Responses of cotton (Gossypium...
Light is one of the most important resources for plant. Light level in canopies varies greatly. Prev...
Light is one of the most important resources for plant. Light level in canopy varies greatly. Previo...
This paper reports an experimental test of the hypothesis that cotton and soybean differing in leaf ...
Five cotton (Gossypium hirsutum L.) cultivars were grown in the field in Xinjiang, China to evaluate...
Photosynthesis rate per unit leaf area and leaf longevity are significant components of field cotton...
Domestication involves dramatic phenotypic and physiological diversifications due to successive sele...
Photoinactivation of Photosystem II (PS II) during photosynthesis can lead to the loss of photochemi...
Mesophyll conductance (gm) is a crucial leaf trait contributing to the photosynthetic rate (AN). Pla...
Growing Typha latifolia leaf segments traverse a wide range of light environments as they are pushed...
Cotton (Gossypium hirsutum L.) net photosynthetic rate (P-N) decreased with leaf age and low irradia...
Leaf photosynthesis is regulated by multiple factors that help the plant to adapt to fluctuating lig...
Publication Inra prise en compte dans l'analyse bibliométrique des publications scientifiques mondia...
Cotton species have adapted to their originated environment by developing different physiological an...
Under severe water stress, leaf wilting is quite general in higher plants. This passive movement can...
Leaf nitrogen content and light intensity affect leaf photosynthesis. Responses of cotton (Gossypium...
Light is one of the most important resources for plant. Light level in canopies varies greatly. Prev...
Light is one of the most important resources for plant. Light level in canopy varies greatly. Previo...
This paper reports an experimental test of the hypothesis that cotton and soybean differing in leaf ...
Five cotton (Gossypium hirsutum L.) cultivars were grown in the field in Xinjiang, China to evaluate...
Photosynthesis rate per unit leaf area and leaf longevity are significant components of field cotton...
Domestication involves dramatic phenotypic and physiological diversifications due to successive sele...
Photoinactivation of Photosystem II (PS II) during photosynthesis can lead to the loss of photochemi...
Mesophyll conductance (gm) is a crucial leaf trait contributing to the photosynthetic rate (AN). Pla...
Growing Typha latifolia leaf segments traverse a wide range of light environments as they are pushed...
Cotton (Gossypium hirsutum L.) net photosynthetic rate (P-N) decreased with leaf age and low irradia...
Leaf photosynthesis is regulated by multiple factors that help the plant to adapt to fluctuating lig...
Publication Inra prise en compte dans l'analyse bibliométrique des publications scientifiques mondia...