Quantitative traits may be controlled by many loci, many alleles at each locus, and subject to genotype-by-environment interactions, making them difficult to map. One example of such a complex trait is shoot branching in the model plant Arabidopsis, and its plasticity in response to nitrate. Here, we use artificial selection under contrasting nitrate supplies to dissect the genetic architecture of this complex trait, where loci identified by association mapping failed to explain heritability estimates. We found a consistent response to selection for high branching, with correlated responses in other traits such as plasticity and flowering time. Genome-wide scans for selection and simulations suggest that at least tens of loci control this t...
Root growth and architecture are major components of plant nutrient and water use efficiencies and t...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
<div><p>Root growth and architecture are major components of plant nutrient and water use efficienci...
Funder: FP7 Ideas: European Research Council; funder-id: http://dx.doi.org/10.13039/100011199; Grant...
The capacity of organisms to tune their development in response to environmental cues is pervasive i...
Plant development is highly plastic, allowing plants to adapt to constant changes in environmental c...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
International audienceOne of the main outcomes of quantitative genetics approaches to natural variat...
<div><p>Plant development is remarkably plastic but how precisely can the plant customize its form t...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
Nitrogen fertilization increases crop yield but excessive nitrate use can be a major environmental p...
International audienceOne of the main outcomes of quantitative genetics approaches to natural variat...
Plant development is remarkably plastic but how precisely can the plant customize its form to specif...
International audienceOne of the main outcomes of quantitative genetics approaches to natural variat...
Root growth and architecture are major components of plant nutrient and water use efficiencies and t...
Root growth and architecture are major components of plant nutrient and water use efficiencies and t...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
<div><p>Root growth and architecture are major components of plant nutrient and water use efficienci...
Funder: FP7 Ideas: European Research Council; funder-id: http://dx.doi.org/10.13039/100011199; Grant...
The capacity of organisms to tune their development in response to environmental cues is pervasive i...
Plant development is highly plastic, allowing plants to adapt to constant changes in environmental c...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
International audienceOne of the main outcomes of quantitative genetics approaches to natural variat...
<div><p>Plant development is remarkably plastic but how precisely can the plant customize its form t...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
Nitrogen fertilization increases crop yield but excessive nitrate use can be a major environmental p...
International audienceOne of the main outcomes of quantitative genetics approaches to natural variat...
Plant development is remarkably plastic but how precisely can the plant customize its form to specif...
International audienceOne of the main outcomes of quantitative genetics approaches to natural variat...
Root growth and architecture are major components of plant nutrient and water use efficiencies and t...
Root growth and architecture are major components of plant nutrient and water use efficiencies and t...
One of the main outcomes of quantitative genetics approaches to natural variation is to reveal the g...
<div><p>Root growth and architecture are major components of plant nutrient and water use efficienci...