Spatial Genetic Structure in Natural Populations of Phragmites australis in a Mosaic of Saline Habitats in the Yellow River Delta, China
Determination of spatial genetic structure (SGS) in natural populations is important for both theoretical aspects of evolutionary genetics and their application in species conservation and ecological restoration. In this study, we examined genetic diversity within and among the natural populations o...
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Published in | PloS one Vol. 7; no. 8; p. e43334 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Public Library of Science
16.08.2012
Public Library of Science (PLoS) |
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ISSN | 1932-6203 1932-6203 |
DOI | 10.1371/journal.pone.0043334 |
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Abstract | Determination of spatial genetic structure (SGS) in natural populations is important for both theoretical aspects of evolutionary genetics and their application in species conservation and ecological restoration. In this study, we examined genetic diversity within and among the natural populations of a cosmopolitan grass Phragmites australis (common reed) in the Yellow River Delta (YRD), China, where a mosaic of habitat patches varying in soil salinity was detected. We demonstrated that, despite their close geographic proximity, the common reed populations in the YRD significantly diverged at six microsatellite loci, exhibiting a strong association of genetic variation with habitat heterogeneity. Genetic distances among populations were best explained as a function of environmental difference, rather than geographical distance. Although the level of genetic divergence among populations was relatively low (F'(ST) =0.073), weak but significant genetic differentiation, as well as the concordance between ecological and genetic landscapes, suggests spatial structuring of genotypes in relation to patchy habitats. These findings not only provided insights into the population dynamics of common reed in changing environments, but also demonstrated the feasibility of using habitat patches in a mosaic landscape as test systems to identify appropriate genetic sources for ecological restoration. |
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AbstractList | Determination of spatial genetic structure (SGS) in natural populations is important for both theoretical aspects of evolutionary genetics and their application in species conservation and ecological restoration. In this study, we examined genetic diversity within and among the natural populations of a cosmopolitan grass Phragmites australis (common reed) in the Yellow River Delta (YRD), China, where a mosaic of habitat patches varying in soil salinity was detected. We demonstrated that, despite their close geographic proximity, the common reed populations in the YRD significantly diverged at six microsatellite loci, exhibiting a strong association of genetic variation with habitat heterogeneity. Genetic distances among populations were best explained as a function of environmental difference, rather than geographical distance. Although the level of genetic divergence among populations was relatively low (F'(ST) =0.073), weak but significant genetic differentiation, as well as the concordance between ecological and genetic landscapes, suggests spatial structuring of genotypes in relation to patchy habitats. These findings not only provided insights into the population dynamics of common reed in changing environments, but also demonstrated the feasibility of using habitat patches in a mosaic landscape as test systems to identify appropriate genetic sources for ecological restoration.Determination of spatial genetic structure (SGS) in natural populations is important for both theoretical aspects of evolutionary genetics and their application in species conservation and ecological restoration. In this study, we examined genetic diversity within and among the natural populations of a cosmopolitan grass Phragmites australis (common reed) in the Yellow River Delta (YRD), China, where a mosaic of habitat patches varying in soil salinity was detected. We demonstrated that, despite their close geographic proximity, the common reed populations in the YRD significantly diverged at six microsatellite loci, exhibiting a strong association of genetic variation with habitat heterogeneity. Genetic distances among populations were best explained as a function of environmental difference, rather than geographical distance. Although the level of genetic divergence among populations was relatively low (F'(ST) =0.073), weak but significant genetic differentiation, as well as the concordance between ecological and genetic landscapes, suggests spatial structuring of genotypes in relation to patchy habitats. These findings not only provided insights into the population dynamics of common reed in changing environments, but also demonstrated the feasibility of using habitat patches in a mosaic landscape as test systems to identify appropriate genetic sources for ecological restoration. Determination of spatial genetic structure (SGS) in natural populations is important for both theoretical aspects of evolutionary genetics and their application in species conservation and ecological restoration. In this study, we examined genetic diversity within and among the natural populations of a cosmopolitan grass Phragmites australis (common reed) in the Yellow River Delta (YRD), China, where a mosaic of habitat patches varying in soil salinity was detected. We demonstrated that, despite their close geographic proximity, the common reed populations in the YRD significantly diverged at six microsatellite loci, exhibiting a strong association of genetic variation with habitat heterogeneity. Genetic distances among populations were best explained as a function of environmental difference, rather than geographical distance. Although the level of genetic divergence among populations was relatively low (F’ST = 0.073), weak but significant genetic differentiation, as well as the concordance between ecological and genetic landscapes, suggests spatial structuring of genotypes in relation to patchy habitats. These findings not only provided insights into the population dynamics of common reed in changing environments, but also demonstrated the feasibility of using habitat patches in a mosaic landscape as test systems to identify appropriate genetic sources for ecological restoration. Determination of spatial genetic structure (SGS) in natural populations is important for both theoretical aspects of evolutionary genetics and their application in species conservation and ecological restoration. In this study, we examined genetic diversity within and among the natural populations of a cosmopolitan grass Phragmites australis (common reed) in the Yellow River Delta (YRD), China, where a mosaic of habitat patches varying in soil salinity was detected. We demonstrated that, despite their close geographic proximity, the common reed populations in the YRD significantly diverged at six microsatellite loci, exhibiting a strong association of genetic variation with habitat heterogeneity. Genetic distances among populations were best explained as a function of environmental difference, rather than geographical distance. Although the level of genetic divergence among populations was relatively low (F'.sub.ST = 0.073), weak but significant genetic differentiation, as well as the concordance between ecological and genetic landscapes, suggests spatial structuring of genotypes in relation to patchy habitats. These findings not only provided insights into the population dynamics of common reed in changing environments, but also demonstrated the feasibility of using habitat patches in a mosaic landscape as test systems to identify appropriate genetic sources for ecological restoration. |
Audience | Academic |
Author | Zhuge, Liqiong Li, Bo Nie, Ming Zhu, Zhu Gao, Lexuan Tang, Shaoqing Yang, Ji |
AuthorAffiliation | CNR, Italy 2 College of Life Sciences, Guangxi Normal University, Guilin, China 3 Center for Watershed Ecology, Nanchang University, Nanchang, China 1 Center for Evolutionary Biology and Institute of Biodiversity Science, Fudan University, Shanghai, China |
AuthorAffiliation_xml | – name: 1 Center for Evolutionary Biology and Institute of Biodiversity Science, Fudan University, Shanghai, China – name: 2 College of Life Sciences, Guangxi Normal University, Guilin, China – name: 3 Center for Watershed Ecology, Nanchang University, Nanchang, China – name: CNR, Italy |
Author_xml | – sequence: 1 givenname: Lexuan surname: Gao fullname: Gao, Lexuan – sequence: 2 givenname: Shaoqing surname: Tang fullname: Tang, Shaoqing – sequence: 3 givenname: Liqiong surname: Zhuge fullname: Zhuge, Liqiong – sequence: 4 givenname: Ming surname: Nie fullname: Nie, Ming – sequence: 5 givenname: Zhu surname: Zhu fullname: Zhu, Zhu – sequence: 6 givenname: Bo surname: Li fullname: Li, Bo – sequence: 7 givenname: Ji surname: Yang fullname: Yang, Ji |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22916244$$D View this record in MEDLINE/PubMed |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 14 content type line 23 Competing Interests: The authors have declared that no competing interests exist. Conceived and designed the experiments: LG ZZ BL JY. Performed the experiments: LG ST LZ MN. Analyzed the data: LG ZZ JY. Wrote the paper: LG ZZ BL JY. |
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SubjectTerms | Adaptation Aquatic plants Biodiversity Biological evolution Biology Changing environments China Conservation Divergence Ecological monitoring Ecological restoration Ecosystem Ecosystem biology Ecosystems Environmental changes Environmental restoration Evolution & development Evolutionary biology Evolutionary genetics Feasibility studies Genes Genetic distance Genetic divergence Genetic diversity Genetic structure Genetic Variation - genetics Genetics Genotypes Habitats Heterogeneity Life sciences Microsatellite Repeats - genetics Natural populations Phragmites australis Poaceae - genetics Population Population biology Population dynamics Population genetics Populations Restoration Rivers Salinity Soil salinity Species diversity Studies Wildlife conservation |
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Title | Spatial Genetic Structure in Natural Populations of Phragmites australis in a Mosaic of Saline Habitats in the Yellow River Delta, China |
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