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Data from: Color-biased dispersal inferred by fine-scale genetic spatial autocorrelation in a color polymorphic salamander
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关键词:
spatial genetic structure Subject area: Population structure and phylogeography;genetic spatial autocorrelation;color polymorphism;Plethodon cinereus;microsatellite DNA;sex-biased dispersal
DOI:
doi:10.5061/dryad.732d5
摘要:
. Differences in spatial genetic structure have been used extensively to infer within-population sex-biased dispersal but have never been used to test
Data from: The role of selection in driving landscape genomic structure of the waterflea Daphnia magna
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关键词:
Monopolization hypothesis;Natural Selection and Contemporary Evolution;genetic drift;ecological genomics;environmental genomics;environmental association analysis;present;founder effects;RDA;Daphnia magna
DOI:
doi:10.5061/dryad.5g4r0
摘要:
and the identification of demographic processes that lead to present-day populations genetic structure. Ecological model species with a suite of genomic tools
Data from: History, geography, and host use shape genome-wide patterns of genetic variation in the redheaded pine sawfly (Neodiprion lecontei)
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关键词:
Isolation-by-distance;ecological speciation;Isolation-by-colonization;Neodiprion lecontei;Pleistocene divergence;Demographic modeling;Pinus;Isolation-by-Environment
DOI:
doi:10.5061/dryad.vh75r
摘要:
on of divergent host use to genetic differentiation can be difficult, however, as dispersal limitation and population structure may also influence patterns of genetic variati
Data from: Heterogeneity in genetic diversity among non-coding loci fails to fit neutral coalescent models of population history
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关键词:
multilocus;introns;Anas strepera;Neutrality;Holarctic;coalescent;simulations
DOI:
doi:10.5061/dryad.nv5v1v59
摘要:
inferences, such as divergence, gene flow, and changes in population size, assume that genetic data reflect simple population histories and neutral evolutionary proce
Data from: Postglacial expansion and not human persecution best explains the population structure in the endangered kea (Nestor notabilis)
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关键词:
End of Pleistocene to 2012;Nestor notabilis;Population Genetics - Empirical
DOI:
doi:10.5061/dryad.1mf51
摘要:
sses that shaped the current patterns of genetic variation in endangered species. Population sub-structuring can occur as a result of survival in sever
Data from: STRUCTURE is more robust than other clustering methods in simulated mixed-ploidy populations
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关键词:
polyploidy;admixture;Bayesian clustering;structure;population genetics
DOI:
doi:10.5061/dryad.6g635f6
摘要:
Analyses of population genetic structure has become a standard approach in population genetics. In polyploid complexes, clustering analyses
Data from: Regional environmental pressure influences population differentiation in turbot (Scophthalmus maximus)
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关键词:
Scophthalmus maximus;population structure;oceanography;microsatellite;seascape genetics;adaptive genetic variation
DOI:
doi:10.5061/dryad.21k5t
摘要:
, genetic inference can be greatly enhanced by increasing the genomic, geographic or environmental resolution of population genetic studies. Her
locus phylogenetic methods
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关键词:
Phylogenetic Theory and Methods;phylogeography;Sula leucogaster;Birds;Population Genetics - Empirical
DOI:
doi:10.5061/dryad.t49d5
摘要:
locus phylogenetic inference (e.g., *BEAST) may be particularly useful when applied to populations with relatively old divergence times. Here we use such an approach
Data from: Population demography and heterozygosity-fitness correlations in natural guppy populations: an examination using sexually selected fitne
负责人:
关键词:
genetic diversity;Inbreeding;Poecilia reticulata;sperm traits;identity disequilibrium
DOI:
doi:10.5061/dryad.5s68j
摘要:
of inbreeding in natural populations. Although population demography, reflected in population-level genetic parameters such as allelic diversity or identi
Data from: Determining population structure and hybridization for two iris species
负责人:
关键词:
genotyping-by-sequencing;population genetics;Iris brevicaulis;Iris fulva;introgression
DOI:
doi:10.5061/dryad.sd845
摘要:
o a phylogenetic analysis resolved two of six populations of I. brevicaulis that shared alleles with I. fulva. Taken together, our results suggest major difference

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