International audienceShade-avoiding plants, including Arabidopsis (Arabidopsis thaliana), display a number of growth responses, such as elongation of stem-like structures and repositioning of leaves, elicited by shade cues, including a reduction in the blue and red portions of the solar spectrum and a low-red to far-red ratio. Shade also promotes phototropism of de-etiolated seedlings through repression of phytochrome B, presumably to enhance capture of unfiltered sunlight. Here we show that both low blue light and a low-red to far-red light ratio are required to rapidly enhance phototropism in Arabidopsis seedlings. However, prolonged low blue light treatments are sufficient to promote phototropism through reduced cryptochrome1 (cry1) act...
Plant growth is strongly influenced by the presence of neighbors that compete for light resources. I...
Plants such as Arabidopsis thaliana respond to foliar shade and neighbors who may become competitors...
In nature, plants integrate a wide range of light signals from solar radiation to adapt to the surro...
Shade-avoiding plants, including Arabidopsis (Arabidopsis thaliana), display a number of growth resp...
Plants respond to a reduction in the red/far-red ratio (R:FR) of light, caused by the proximity of o...
Phototropism is an asymmetric growth response enabling plants to optimally position their organs. In...
Phototropism enables plants to orient growth towards the direction of light and thereby maximizes ph...
Plants in dense vegetation perceive their neighbors primarily through changes in light quality. Init...
© 2016 Elsevier Inc. Sun-loving plants have the ability to detect and avoid shading through sensing ...
Sun-loving plants have the ability to detect and avoid shading through sensing of both blue and red ...
Phototropism is an asymmetric growth response enabling plants to optimally position their organs. In...
Plants in dense vegetation perceive their neighbors primarily through changes in light quality. Init...
Light absorption by plants changes the composition of light inside vegetation. Blue (B) and red (R) ...
The presence of neighboring vegetation modifies the light environment experienced by plants, generat...
To examine whether phytochromes contribute to blue-light-mediated stem elongation, plant phenotypic ...
Plant growth is strongly influenced by the presence of neighbors that compete for light resources. I...
Plants such as Arabidopsis thaliana respond to foliar shade and neighbors who may become competitors...
In nature, plants integrate a wide range of light signals from solar radiation to adapt to the surro...
Shade-avoiding plants, including Arabidopsis (Arabidopsis thaliana), display a number of growth resp...
Plants respond to a reduction in the red/far-red ratio (R:FR) of light, caused by the proximity of o...
Phototropism is an asymmetric growth response enabling plants to optimally position their organs. In...
Phototropism enables plants to orient growth towards the direction of light and thereby maximizes ph...
Plants in dense vegetation perceive their neighbors primarily through changes in light quality. Init...
© 2016 Elsevier Inc. Sun-loving plants have the ability to detect and avoid shading through sensing ...
Sun-loving plants have the ability to detect and avoid shading through sensing of both blue and red ...
Phototropism is an asymmetric growth response enabling plants to optimally position their organs. In...
Plants in dense vegetation perceive their neighbors primarily through changes in light quality. Init...
Light absorption by plants changes the composition of light inside vegetation. Blue (B) and red (R) ...
The presence of neighboring vegetation modifies the light environment experienced by plants, generat...
To examine whether phytochromes contribute to blue-light-mediated stem elongation, plant phenotypic ...
Plant growth is strongly influenced by the presence of neighbors that compete for light resources. I...
Plants such as Arabidopsis thaliana respond to foliar shade and neighbors who may become competitors...
In nature, plants integrate a wide range of light signals from solar radiation to adapt to the surro...