Because plants depend on light for growth, their development and physiology must suit the particular light environment. Plants native to different environments show heritable, apparently adaptive, changes in their response to light. As a first step in unraveling the genetic and molecular basis of these naturally occurring differences, we have characterized intraspecific variation in a light-dependent developmental process-seedling emergence. We examined 141 Arabidopsis thaliana accessions for their response to four light conditions, two hormone conditions and darkness. There was significant variation in all conditions, confirming that Arabidopsis is a rich source of natural genetic diversity. Hierarchical clustering revealed that some acces...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
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 sessile and photo-autotrophic; their entire life cycle is thus strongly influenced by the...
Plants are sessile and photo-autotrophic; their entire life cycle is thus strongly influenced by the...
Plants have a sophisticated system for sensing and responding to their light environment. The light ...
Plants have a sophisticated system for sensing and responding to their light environment. The light ...
Arabidopsis thaliana isolates from the wild vary enormously in their morphology and physiological re...
Phytochrome is a family of photoreceptors that regulates plant photomorphogenesis; the best-characte...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
Several aspects of the photophysiology of wild-type Arabidopsis thaliana seedlings were compared wit...
Light regulates many physiological and developmental events in plants through the action of multiple...
Several aspects of the photophysiology of wild-type Arabidopsis thaliana seedlings were compared wit...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
Color poster with text, images, charts, and graphs.Plants require light for survival and have develo...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
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 sessile and photo-autotrophic; their entire life cycle is thus strongly influenced by the...
Plants are sessile and photo-autotrophic; their entire life cycle is thus strongly influenced by the...
Plants have a sophisticated system for sensing and responding to their light environment. The light ...
Plants have a sophisticated system for sensing and responding to their light environment. The light ...
Arabidopsis thaliana isolates from the wild vary enormously in their morphology and physiological re...
Phytochrome is a family of photoreceptors that regulates plant photomorphogenesis; the best-characte...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
Several aspects of the photophysiology of wild-type Arabidopsis thaliana seedlings were compared wit...
Light regulates many physiological and developmental events in plants through the action of multiple...
Several aspects of the photophysiology of wild-type Arabidopsis thaliana seedlings were compared wit...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
Color poster with text, images, charts, and graphs.Plants require light for survival and have develo...
We used 52 Arabidopsis (Arabidopsis thaliana) accessions and developed a new set of 137 recombinant ...
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...