Using Genome-Wide SNP Discovery and Genotyping to Reveal the Main Source of Population Differentiation in Nothofagus dombeyi (Mirb.) Oerst. in Chile
Author
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Hasbún, Rodrigo
Author
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González, Jorge
Author
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Iturra, Carolina
Author
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Fuentes, Glenda
Author
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Alarcón, Diego
Author
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Ruiz, Eduardo
Admission date
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2016-12-07T15:50:22Z
Available date
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2016-12-07T15:50:22Z
Publication date
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2016
Cita de ítem
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International Journal of Genomics Volume 2016, Article ID 3654093, 10 pages
es_ES
Identifier
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10.1155/2016/3654093
Identifier
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https://repositorio.uchile.cl/handle/2250/141740
Abstract
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Within a woody plant species, environmental heterogeneity has the potential to influence the distribution of genetic variation among populations through several evolutionary processes. In some species, a relationship between environmental characteristics and the distribution of genotypes can be detected, showing the importance of natural selection as the main source of differentiation. Nothofagus dombeyi (Mirb.) Oerst. (Nothofagaceae) is an endemic tree species occurring both in Chile and in Argentina temperate forests. Postglacial history has been studied with chloroplast DNA and evolutionary forces shaping genetic variation patterns have been analysed with isozymes but fine-scale genetic diversity studies are needed. The study of demographic and selection histories in Nothofagus dombeyi requires more informative markers such as single nucleotide polymorphisms (SNP). Genotyping-by-Sequencing tools now allow studying thousands of SNP markers at reasonable prices in nonmodel species. We investigated more than 10K SNP loci for signatures of local adaptation and showed that interrogation of genomic resources can identify shifts in genetic diversity and putative adaptive signals in this nonmodel woody species.