Abstract Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, seasonal changes, canopy shading, and other environmental factors. As a result, they need to have developed a method for dissipating excess energy obtained from periodic excessive sunlight exposure. Non‐photochemical quenching (NPQ) dissipates excess energy as heat, however, the physical and molecular genetic mechanics of NPQ variation are not understood. In this study, we investigated the genetic loci involved in NPQ by first growing different Arabidopsis thaliana accessions in local and seasonal climate conditions, then measured their NPQ kinetics through development by chlorophyll fluorescence. We used genome‐wide association studies (GWAS...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, seasonal ...
The photoprotective processes conferred by nonphotochemical quenching (NPQ) serve fundamental roles ...
The efficiency of photosynthesis results from the composition and organization of the plant’s ...
The efficiency of photosynthesis results from the composition and organization of the plant’s intern...
Manipulating the photoprotective mechanism has been demonstrated to be an effective way to enhance t...
Exploiting genetic variation for more efficient photosynthesis is an underexplored route towards new...
• Photoprotection against excess light via nonphotochemical quenching (NPQ) is indispensable for pl...
• Photoprotection against excess light via nonphotochemical quenching (NPQ) is indispensable for pl...
Photosynthesis is a biological process which converts light energy into chemical energy that is used...
Photosynthesis is a biological process which converts light energy into chemical energy that is used...
Oxygenic photosynthesis is the gateway of the sun’s energy into the biosphere, it is where light bec...
Photosynthesis is a biological process which converts light energy into chemical energy that is used...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, seasonal ...
The photoprotective processes conferred by nonphotochemical quenching (NPQ) serve fundamental roles ...
The efficiency of photosynthesis results from the composition and organization of the plant’s ...
The efficiency of photosynthesis results from the composition and organization of the plant’s intern...
Manipulating the photoprotective mechanism has been demonstrated to be an effective way to enhance t...
Exploiting genetic variation for more efficient photosynthesis is an underexplored route towards new...
• Photoprotection against excess light via nonphotochemical quenching (NPQ) is indispensable for pl...
• Photoprotection against excess light via nonphotochemical quenching (NPQ) is indispensable for pl...
Photosynthesis is a biological process which converts light energy into chemical energy that is used...
Photosynthesis is a biological process which converts light energy into chemical energy that is used...
Oxygenic photosynthesis is the gateway of the sun’s energy into the biosphere, it is where light bec...
Photosynthesis is a biological process which converts light energy into chemical energy that is used...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...