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Natural variation in abiotic stress responsive gene expression and local adaptation to climate in Arabidopsis thaliana

Molecular Biology and Evolution

May 23, 2014

Jesse R LaskyThomas E Juenger

Abstract

Gene expression varies widely in natural populations, yet the proximate and ultimate causes of this variation are poorly known. Understanding how variation in gene expression affects abiotic stress tolerance, fitness, and adaptation is central to the field of evolutionary genetics. We t...read more

Mentioned in this Paper

Genome
Acclimatization
Response to Water Deprivation
Promoter
Gene Expression Regulation, Plant
Gene Expression
Genomics
Arabidopsis thaliana Proteins
Arabidopsis thaliana extract
Genetic Fitness
12
2
2
182
Paper Details
References
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  • Citations27
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  • References79
  • Citations27
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Natural variation in abiotic stress responsive gene expression and local adaptation to climate in Arabidopsis thaliana

Molecular Biology and Evolution

May 23, 2014

Jesse R LaskyThomas E Juenger

PMID: 24850899

DOI: 10.1093/molbev/msu170

Abstract

Gene expression varies widely in natural populations, yet the proximate and ultimate causes of this variation are poorly known. Understanding how variation in gene expression affects abiotic stress tolerance, fitness, and adaptation is central to the field of evolutionary genetics. We t...read more

Mentioned in this Paper

Genome
Acclimatization
Response to Water Deprivation
Promoter
Gene Expression Regulation, Plant
Gene Expression
Genomics
Arabidopsis thaliana Proteins
Arabidopsis thaliana extract
Genetic Fitness
12
2
2
182

Trending Feeds

COVID-19

Coronaviruses encompass a large family of viruses that cause the common cold as well as more serious diseases, such as the ongoing outbreak of coronavirus disease 2019 (COVID-19; formally known as 2019-nCoV). Coronaviruses can spread from animals to humans; symptoms include fever, cough, shortness of breath, and breathing difficulties; in more severe cases, infection can lead to death. This feed covers recent research on COVID-19.

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Examining the genomics, transcriptomics, proteomics and metabolomics of the human vascular endothelial cells at the single cell level will help build a single cell atlas of human vascular endothelium, which would give a unique ID card for each cell type, a three-dimensional map of how cell types work together to form tissues and insights into how changes in the map underlie health and disease of the vascular endothelium from young to old age. Disocver the latest research on the single cell atlas of human vascular endothelial cell atlas here.

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Paper Details
References
  • References79
  • Citations27
12345...
  • References79
  • Citations27
123

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