One of the objectives of plant translational genomics is to use knowledge and genes discovered in model species to improve crops. However, the value of translational genomics to plant breeding, especially for complex traits like abiotic stress tolerance, remains uncertain. Using comparative genomics (ionomics, transcriptomics and metabolomics) we analyzed the responses to salinity of three model and three cultivated species of the legume genus Lotus. At physiological and ionomic levels, models responded to salinity in a similar way to crop species, and changes in the concentration of shoot Cl- correlated well with tolerance. Metabolic changes were partially conserved, but divergence was observed amongst the genotypes. Transcriptome analysis...
Salt stress is an important factor limiting plant productivity by affecting plant physiology and met...
Abiotic stresses, such as salinity and drought, are among the most limiting factors to crop yield. I...
Plants regulate responses to salt stress using biological pathways, such as signal perception and tr...
One of the objectives of plant translational genomics is to use knowledge and genes discovered in mo...
One of the objectives of plant translational genomics is to use knowledge and genes discovered in mo...
Plants are frequently exposed to wide range of harsh environmental factors, such as drought, salinit...
International audienceEvolutionary diversity can be driven by the interaction of plants with differe...
Salinity stress is one of the most important abiotic stresses faced by farmers. Salinity stress is r...
In the post-genomic era, increasing efforts have been done to describe the relationship between geno...
<div><p>Plants regulate responses to salt stress using biological pathways, such as signal perceptio...
At present more than 20% of all the irrigated land in the world is estimated as affected by salinity...
With recent advancements in DNA-chip technology, requisite software development and support and prog...
Salinity is one of the most important abiotic stresses for agricultural crops. High concentrations o...
Schrenkiella parvula is an extremophyte model related to the most widely studied plant model, Arabid...
Plants like other organisms are mostly under the threat of various stresses (both biotic as well as ...
Salt stress is an important factor limiting plant productivity by affecting plant physiology and met...
Abiotic stresses, such as salinity and drought, are among the most limiting factors to crop yield. I...
Plants regulate responses to salt stress using biological pathways, such as signal perception and tr...
One of the objectives of plant translational genomics is to use knowledge and genes discovered in mo...
One of the objectives of plant translational genomics is to use knowledge and genes discovered in mo...
Plants are frequently exposed to wide range of harsh environmental factors, such as drought, salinit...
International audienceEvolutionary diversity can be driven by the interaction of plants with differe...
Salinity stress is one of the most important abiotic stresses faced by farmers. Salinity stress is r...
In the post-genomic era, increasing efforts have been done to describe the relationship between geno...
<div><p>Plants regulate responses to salt stress using biological pathways, such as signal perceptio...
At present more than 20% of all the irrigated land in the world is estimated as affected by salinity...
With recent advancements in DNA-chip technology, requisite software development and support and prog...
Salinity is one of the most important abiotic stresses for agricultural crops. High concentrations o...
Schrenkiella parvula is an extremophyte model related to the most widely studied plant model, Arabid...
Plants like other organisms are mostly under the threat of various stresses (both biotic as well as ...
Salt stress is an important factor limiting plant productivity by affecting plant physiology and met...
Abiotic stresses, such as salinity and drought, are among the most limiting factors to crop yield. I...
Plants regulate responses to salt stress using biological pathways, such as signal perception and tr...