Exploiting genetic variation for more efficient photosynthesis is an underexplored route towards new crop varieties. This study demonstrates the genetic dissection of higher plant photosynthesis efficiency down to the genomic DNA level, by confirming that allelic sequence variation at the Arabidopsis thaliana YELLOW SEEDLING1 (YS1) gene explains natural diversity in photosynthesis acclimation to high irradiance. We use a genome-wide association study to identify quantitative trait loci (QTLs) involved in the Arabidopsis photosynthetic acclimation response. Candidate genes underlying the QTLs are prioritized according to functional clues regarding gene ontology, expression and function. Reverse genetics and quantitative complementation confi...
Forward genetics has been vital in revealing the identity and function of most plant genes. However,...
<div><p>Shade avoidance is an ecologically and molecularly well-understood set of plant developmenta...
A major challenge in biology is to identify molecular polymorphisms responsible for variation in com...
The efficiency of photosynthesis results from the composition and organization of the plant’s ...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Abstract Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, ...
Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, seasonal ...
Oxygenic photosynthesis is the gateway of the sun’s energy into the biosphere, it is where light bec...
Arabidopsis thaliana shows a wide range of natural genetic variation in light responses. Shade avoid...
Plants have a sophisticated system for sensing and responding to their light environment. The light ...
Arabidopsis thaliana shows a wide range of genetic and trait variation among wild accessions. Becaus...
Arabidopsis thaliana shows a wide range of natural genetic variation in light responses. Shade avoid...
Currently, genetic variation is probably the most important basic resource for plant biology. In add...
A major challenge in biology is to identify molecular polymorphisms responsible for variation in com...
Because plants depend on light for growth, their development and physiology must suit the particular...
Forward genetics has been vital in revealing the identity and function of most plant genes. However,...
<div><p>Shade avoidance is an ecologically and molecularly well-understood set of plant developmenta...
A major challenge in biology is to identify molecular polymorphisms responsible for variation in com...
The efficiency of photosynthesis results from the composition and organization of the plant’s ...
Plants are known to be able to acclimate their photosynthesis to the level of irradiance. Here we pr...
Abstract Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, ...
Field‐grown plants have variable exposure to sunlight as a result of shifting cloud‐cover, seasonal ...
Oxygenic photosynthesis is the gateway of the sun’s energy into the biosphere, it is where light bec...
Arabidopsis thaliana shows a wide range of natural genetic variation in light responses. Shade avoid...
Plants have a sophisticated system for sensing and responding to their light environment. The light ...
Arabidopsis thaliana shows a wide range of genetic and trait variation among wild accessions. Becaus...
Arabidopsis thaliana shows a wide range of natural genetic variation in light responses. Shade avoid...
Currently, genetic variation is probably the most important basic resource for plant biology. In add...
A major challenge in biology is to identify molecular polymorphisms responsible for variation in com...
Because plants depend on light for growth, their development and physiology must suit the particular...
Forward genetics has been vital in revealing the identity and function of most plant genes. However,...
<div><p>Shade avoidance is an ecologically and molecularly well-understood set of plant developmenta...
A major challenge in biology is to identify molecular polymorphisms responsible for variation in com...