Published November 11, 2010 | Version v1
Journal article Open

A Coastal Cline in Sodium Accumulation in Arabidopsis thaliana Is Driven by Natural Variation of the Sodium Transporter AtHKT1;1

  • 1. United States Department of Agriculture
  • 2. Purdue University
  • 3. University of Southern California
  • 4. University of Chicago
  • 5. Austrian Academy of Sciences

Description

The genetic model plant Arabidopsis thaliana, like many plant species, experiences a range of edaphic conditions across its natural habitat. Such heterogeneity may drive local adaptation, though the molecular genetic basis remains elusive. Here, we describe a study in which we used genome-wide association mapping, genetic complementation, and gene expression studies to identify cis-regulatory expression level polymorphisms at the AtHKT1;1 locus, encoding a known sodium (Na+) transporter, as being a major factor controlling natural variation in leaf Na+ accumulation capacity across the global A. thaliana population. A weak allele of AtHKT1;1 that drives elevated leaf Na+ in this population has been previously linked to elevated salinity tolerance. Inspection of the geographical distribution of this allele revealed its significant enrichment in populations associated with the coast and saline soils in Europe. The fixation of this weak AtHKT1;1 allele in these populations is genetic evidence supporting local adaptation to these potentially saline impacted environments.

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Additional details

Identifiers

DOI
10.1371/journal.pgen.1001193
Other
oai:uchicago.tind.io:10701

Funding

National Institutes of Health
R01 GM078536
National Institutes of Health
3R01GM078536-03S1
Purdue University
Center for Gene-Environment Interactions

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Ecology and Evolution