Light critically affects the physiology of plants. Using two-dimensional gel electrophoresis, we used a proteomics approach to analyze the responses of Arabidopsis thaliana to red (660 nm), far-red (730 nm) and blue (450 nm) light, which are utilized by type II and type I phytochromes, and blue light receptors, respectively. Under specific light treatments, the proteomic profiles of 49 protein spots exhibited over 1.8-fold difference in protein abundance, significant at p < 0.05. Most of these proteins were metabolic enzymes, indicating metabolic changes induced by light of specific wavelengths. The differentially-expressed proteins formed seven dusters, reflecting coregulation. We used the 49 differentially-regulated proteins as molecular ...
Plants pigments, such as chlorophyll and carotenoids, absorb light within specific wavelength ranges...
Color poster with text, images, charts, and graphs.Plants require light for survival and have develo...
Phytochromes phyA and phyB, and cryptochromes cry1 and cry2 are the fourth main photoreceptors that ...
Light is one of the main environmental factors largely determining plant life. Light provides energy...
ABSTRACT: Plants adapt to environmental light conditions by photoreceptor-mediated physiological res...
Chloroplast function in photosynthesis is essential for plant growth and development. It is well-kno...
Plants adapt to environmental light conditions by photoreceptor-mediated physiological responses, bu...
Abstract Compared to controlled laboratory conditions, plant growth in the field is rarely optimal s...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350 31...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
In plants oxygenic photosynthesis is performed by large protein complexes found in the thylakoid mem...
A complete proteome analysis of the chloroplast stroma, using 2D-PAGE, from spinach and Arabidopsis ...
In plants oxygenic photosynthesis is performed by large protein complexes found in the thylakoid mem...
A complete proteome analysis of the chloroplast stroma, using 2D-PAGE, from spinach and Arabidopsis ...
Because plants depend on light for growth, their development and physiology must suit the particular...
Plants pigments, such as chlorophyll and carotenoids, absorb light within specific wavelength ranges...
Color poster with text, images, charts, and graphs.Plants require light for survival and have develo...
Phytochromes phyA and phyB, and cryptochromes cry1 and cry2 are the fourth main photoreceptors that ...
Light is one of the main environmental factors largely determining plant life. Light provides energy...
ABSTRACT: Plants adapt to environmental light conditions by photoreceptor-mediated physiological res...
Chloroplast function in photosynthesis is essential for plant growth and development. It is well-kno...
Plants adapt to environmental light conditions by photoreceptor-mediated physiological responses, bu...
Abstract Compared to controlled laboratory conditions, plant growth in the field is rarely optimal s...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350 31...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
In plants oxygenic photosynthesis is performed by large protein complexes found in the thylakoid mem...
A complete proteome analysis of the chloroplast stroma, using 2D-PAGE, from spinach and Arabidopsis ...
In plants oxygenic photosynthesis is performed by large protein complexes found in the thylakoid mem...
A complete proteome analysis of the chloroplast stroma, using 2D-PAGE, from spinach and Arabidopsis ...
Because plants depend on light for growth, their development and physiology must suit the particular...
Plants pigments, such as chlorophyll and carotenoids, absorb light within specific wavelength ranges...
Color poster with text, images, charts, and graphs.Plants require light for survival and have develo...
Phytochromes phyA and phyB, and cryptochromes cry1 and cry2 are the fourth main photoreceptors that ...