Several major plant responses to competition for light are determined by responses to light signals, in particular to red/far-red ratio (R/FR) and blue light, besides responses mediated through photosynthesis and carbon assimilation (Gautier et al., 1999). These responses to light signals allow plants to react to the presence of neighbours and to anticipate the impact of light competition on photosynthesis. The objective of the study was to evaluate the impact of blue light on leaf growth and its cellular basis, on two short and long leaved populations (FC and FL respectively), which were shown to have different competitive ability (Hazard et al., 1996)
Increasing blue light from LEDs reduces leaf length in kale Boston Swan and Bruce Bugbee Crop Physio...
Key words: action spectrum, artificial solar spectrum, blue light, Cucumis sativus, gas-exchange, li...
To examine whether phytochromes contribute to blue-light-mediated stem elongation, plant phenotypic ...
Characterizing spectral effects of blue and red light ratios on plants could help expand our underst...
The optimal combination of wavelengths of light (spectral quality) for single leaf photosynthesis ha...
Most plants grow in dense vegetation with the risk of being out-competed by neighboring plants. Thes...
The effects of spectral quality on growth, carbon-partitioning and whole-plant net assimilation rema...
Despite decades of research, the effects of spectral quality on plant growth, and development are no...
Shade-avoidance is a major adaptive response of plants, and is usually considered to be controlled b...
Light-emitting diodes (LEDs) are a rapidly developing technology for plant growth lighting and have ...
Red and blue light play pivotal roles on mediating plant developmental processes, while evidence is ...
Despite decades of research, the effects of spectral quality on plant growth, and development are no...
International audienceReduced blue light irradiance is known to enhance leaf elongation rate (LER) i...
To clarify detailed pattern of responses to blue light associated with decreasing phytochrome activi...
While the use of narrowband irradiance regimes containing different blue light fractions has proven ...
Increasing blue light from LEDs reduces leaf length in kale Boston Swan and Bruce Bugbee Crop Physio...
Key words: action spectrum, artificial solar spectrum, blue light, Cucumis sativus, gas-exchange, li...
To examine whether phytochromes contribute to blue-light-mediated stem elongation, plant phenotypic ...
Characterizing spectral effects of blue and red light ratios on plants could help expand our underst...
The optimal combination of wavelengths of light (spectral quality) for single leaf photosynthesis ha...
Most plants grow in dense vegetation with the risk of being out-competed by neighboring plants. Thes...
The effects of spectral quality on growth, carbon-partitioning and whole-plant net assimilation rema...
Despite decades of research, the effects of spectral quality on plant growth, and development are no...
Shade-avoidance is a major adaptive response of plants, and is usually considered to be controlled b...
Light-emitting diodes (LEDs) are a rapidly developing technology for plant growth lighting and have ...
Red and blue light play pivotal roles on mediating plant developmental processes, while evidence is ...
Despite decades of research, the effects of spectral quality on plant growth, and development are no...
International audienceReduced blue light irradiance is known to enhance leaf elongation rate (LER) i...
To clarify detailed pattern of responses to blue light associated with decreasing phytochrome activi...
While the use of narrowband irradiance regimes containing different blue light fractions has proven ...
Increasing blue light from LEDs reduces leaf length in kale Boston Swan and Bruce Bugbee Crop Physio...
Key words: action spectrum, artificial solar spectrum, blue light, Cucumis sativus, gas-exchange, li...
To examine whether phytochromes contribute to blue-light-mediated stem elongation, plant phenotypic ...