Abstract Compared to controlled laboratory conditions, plant growth in the field is rarely optimal since it is frequently challenged by large fluctuations in light and temperature which lower the efficiency of photosynthesis and lead to photo‐oxidative stress. Plants grown under natural conditions therefore place an increased onus on the regulatory mechanisms that protect and repair the delicate photosynthetic machinery. Yet, the exact changes in thylakoid proteome composition which allow plants to acclimate to the natural environment remain largely unexplored. Here, we use quantitative label‐free proteomics to demonstrate that field‐grown Arabidopsis plants incorporate aspects of both the low and high light acclimation strategies previousl...
Conversion of solar energy into chemical energy in plant chloroplasts concomitantly modifies the thy...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
AbstractThe structural response of photosystem II (PSII) and its light-harvesting proteins (LHCII) i...
Compared to controlled laboratory conditions, plant growth in the field is rarely optimal since it i...
Photosynthetic acclimation is the ability of photosynthetic organisms to respond to light irradiance...
Photosynthetic acclimation, the ability to adjust the composition of the thylakoid membrane to optim...
Light critically affects the physiology of plants. Using two-dimensional gel electrophoresis, we use...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...
A complete proteome analysis of the chloroplast stroma, using 2D-PAGE, from spinach and Arabidopsis ...
Plants are subjected to strong fluctuations in light intensity in their natural growth environment, ...
Plants respond to changes in illumination conditions by modifying the thylakoid proteins post-transl...
The structural response of photosystem II (PSII) and its light-harvesting proteins (LHCII) in Arabid...
AbstractRecent advances in vectorial proteomics of protein domains exposed to the surface of photosy...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350 31...
International audienceArabidopsis has become a powerful model to study morphogenesis, plant growth, ...
Conversion of solar energy into chemical energy in plant chloroplasts concomitantly modifies the thy...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
AbstractThe structural response of photosystem II (PSII) and its light-harvesting proteins (LHCII) i...
Compared to controlled laboratory conditions, plant growth in the field is rarely optimal since it i...
Photosynthetic acclimation is the ability of photosynthetic organisms to respond to light irradiance...
Photosynthetic acclimation, the ability to adjust the composition of the thylakoid membrane to optim...
Light critically affects the physiology of plants. Using two-dimensional gel electrophoresis, we use...
Background:Plants exhibit phenotypic plasticity and respond to differences in environmental conditio...
A complete proteome analysis of the chloroplast stroma, using 2D-PAGE, from spinach and Arabidopsis ...
Plants are subjected to strong fluctuations in light intensity in their natural growth environment, ...
Plants respond to changes in illumination conditions by modifying the thylakoid proteins post-transl...
The structural response of photosystem II (PSII) and its light-harvesting proteins (LHCII) in Arabid...
AbstractRecent advances in vectorial proteomics of protein domains exposed to the surface of photosy...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350 31...
International audienceArabidopsis has become a powerful model to study morphogenesis, plant growth, ...
Conversion of solar energy into chemical energy in plant chloroplasts concomitantly modifies the thy...
Proteomic analysis was performed on seedlings after different light treatments. A total of (1 350±31...
AbstractThe structural response of photosystem II (PSII) and its light-harvesting proteins (LHCII) i...