The wild tomato species Solanum chilense and S. peruvianum are a valuable non-model system for studying plant adaptation since they grow in diverse environments facing many abiotic constraints. Here we investigate the sequence evolution of regulatory regions of drought and cold responsive genes and their expression regulation. The coding regions of these genes were previously shown to exhibit signatures of positive selection. Expression profiles and sequence evolution of regulatory regions of members of the Asr (ABA/water stress/ripening induced) gene family and the dehydrin gene pLC30-15 were analyzed in wild tomato populations from contrasting environments. For S. chilense, we found that Asr4 and pLC30-15 appear to respond much faster to ...
Water deficiency is one of the primary causes of crop yield reduction. Most crop plants, including t...
Wild tomato species, like Solanum chilense, are important germplasm resources for enhanced biotic an...
Although applied over extremely short timescales, artificial selection has dramatically altered the ...
The wild tomato species Solanum chilense and S. peruvianum are a valuable non-model system for study...
<div><p>The wild tomato species <i>Solanum chilense</i> and <i>S. peruvianum</i> are a valuable non-...
Wild tomato species are a valuable system in which to study local adaptation to drought: they grow i...
We surveyed nucleotide diversity at two candidate genes LeNCED1 and pLC30-15, involved in an ABA (ab...
Not AvailableMany plant genes are regulated in response to abiotic stresses such as drought, high sa...
Background: The abscisic acid (ABA) pathway plays an important role in the plants' reaction to droug...
Understanding the mechanisms of local adaptation of wild species is a central issue in evolutionary ...
Abiotic stresses such as drought, extreme temperatures, and salinity have a strong impact on plant a...
Water deficit strongly affects plant yield and quality. However, plants can minimize drought injury ...
Abstract Cultivated tomato Solanum lycopersicum (Slyc) is sensitive to water shortages, while its wi...
Tomato ABSCISIC ACID RIPENING 1 (ASR1) was the first cloned plant ASR gene. ASR orthologs were then ...
Tomato (Solanum lycopersicum) is the second most highly produced vegetable crop worldwide and unfavo...
Water deficiency is one of the primary causes of crop yield reduction. Most crop plants, including t...
Wild tomato species, like Solanum chilense, are important germplasm resources for enhanced biotic an...
Although applied over extremely short timescales, artificial selection has dramatically altered the ...
The wild tomato species Solanum chilense and S. peruvianum are a valuable non-model system for study...
<div><p>The wild tomato species <i>Solanum chilense</i> and <i>S. peruvianum</i> are a valuable non-...
Wild tomato species are a valuable system in which to study local adaptation to drought: they grow i...
We surveyed nucleotide diversity at two candidate genes LeNCED1 and pLC30-15, involved in an ABA (ab...
Not AvailableMany plant genes are regulated in response to abiotic stresses such as drought, high sa...
Background: The abscisic acid (ABA) pathway plays an important role in the plants' reaction to droug...
Understanding the mechanisms of local adaptation of wild species is a central issue in evolutionary ...
Abiotic stresses such as drought, extreme temperatures, and salinity have a strong impact on plant a...
Water deficit strongly affects plant yield and quality. However, plants can minimize drought injury ...
Abstract Cultivated tomato Solanum lycopersicum (Slyc) is sensitive to water shortages, while its wi...
Tomato ABSCISIC ACID RIPENING 1 (ASR1) was the first cloned plant ASR gene. ASR orthologs were then ...
Tomato (Solanum lycopersicum) is the second most highly produced vegetable crop worldwide and unfavo...
Water deficiency is one of the primary causes of crop yield reduction. Most crop plants, including t...
Wild tomato species, like Solanum chilense, are important germplasm resources for enhanced biotic an...
Although applied over extremely short timescales, artificial selection has dramatically altered the ...