Abstract
AbstractBackgroundDue to the environmental heterogeneity along elevation gradients, alpine ecosystems are ideal study objects for investigating how ecological variables shape the genetic patterns of natural species. The highest region in the world, the Qinghai-Tibetan Plateau, is a hotspot for the studies of evolutionary processes in plants. Many large rivers spring from the plateau, providing abundant habitats for aquatic and amphibious organisms. In the present study, we examined the genetic diversity of 13Ranunculus subrigiduspopulations distributed throughout the plateau in order to elucidate the relative contribution of geographic distance and environmental dissimilarity to the spatial genetic pattern.ResultsA relatively low level of genetic diversity within populations was found. No spatial genetic structure was suggested by the analyses of molecular variance, Bayesian clustering analysis and Mantel tests. Partial Mantel tests and multiple matrix regression analysis showed a significant influence of the environment on the genetic divergence of the species. Both climatic and water quality variables contribute to the habitat heterogeneity ofR. subrigiduspopulations.ConclusionsOur results suggest that historical processes involving long-distance dispersal and local adaptation may account for the genetic patterns ofR. subrigidusand current environmental factors play an important role in the genetic differentiation and local adaptation of aquatic plants in alpine landscapes.
Funder
National Natural Science Foundation of China
National Key R & D Program of China
Publisher
Springer Science and Business Media LLC
Subject
Ecology, Evolution, Behavior and Systematics
Cited by
19 articles.
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