4.6 Article

Genetic and physiological basis of adaptive salt tolerance divergence between coastal and inland Mimulus guttatus

期刊

NEW PHYTOLOGIST
卷 183, 期 3, 页码 776-788

出版社

WILEY
DOI: 10.1111/j.1469-8137.2009.02901.x

关键词

local adaptation; monkeyflower; osmotic stress; quantitative trait loci (QTLs); reciprocal transplant; salinity; tradeoff; transmission ratio distortion

资金

  1. National Science Foundation, through a FIBR grant [EF-0328636]
  2. Environmental Genomics Grant [EF-0723814]
  3. Sigma Xi Grants-In-Aid of Research
  4. National Institute of Health Graduate Student Fellowship
  5. Duke University Travel Grant
  6. [DEB-0710094]
  7. [DEB-010577]

向作者/读者索取更多资源

P>Local adaptation is a well-established phenomenon whereby habitat-mediated natural selection drives the differentiation of populations. However, little is known about how specific traits and loci combine to cause local adaptation. Here, we conducted a set of experiments to determine which physiological mechanisms contribute to locally adaptive divergence in salt tolerance between coastal perennial and inland annual ecotypes of Mimulus guttatus. Quantitative trait locus (QTL) mapping was used to discover loci involved in salt spray tolerance and leaf sodium (Na+) concentration. To determine whether these QTLs confer fitness in the field, we examined their effects in reciprocal transplant experiments using recombinant inbred lines (RILs). Coastal plants had constitutively higher leaf Na+ concentrations and greater levels of tissue tolerance, but no difference in osmotic stress tolerance. Three QTLs contributed to salt spray tolerance and two QTLs to leaf Na+ concentration. All three salt-spray tolerance QTLs had a significant fitness effects at the coastal field site but no effects inland. Leaf Na+ QTLs had no detectable fitness effects in the field. Physiological results are consistent with adaptation of coastal populations to salt spray and soil salinity. Field results suggest that there may not be trade-offs across habitats for alleles involved in local salt spray adaptations. New Phytologist (2009) 183: 776-788doi: 10.1111/j.1469-8137.2009.02901.x.

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