Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Species-Level Phylogeny and Polyploid Relationships in Hordeum (Poaceae) Inferred by Next-Generation Sequencing and In Silico Cloning of Multiple Nuclear LociRelatedness defies biogeography: the tale of two island endemics (Acacia heterophyllaandA. koa)Evolutionary history of wild barley (Hordeum vulgare subsp. spontaneum) analyzed using multilocus sequence data and paleodistribution modeling.Transferability and polymorphism of barley EST-SSR markers used for phylogenetic analysis in Hordeum chilenseDoes polyploidy facilitate long-distance dispersal?Genetic structure and ecogeographical adaptation in wild barley (Hordeum chilense Roemer et Schultes) as revealed by microsatellite markers.Combined ecological niche modelling and molecular phylogeography revealed the evolutionary history of Hordeum marinum (Poaceae)--niche differentiation, loss of genetic diversity, and speciation in Mediterranean Quaternary refugia.Phylogeographic analyses and paleodistribution modeling indicate pleistocene in situ survival of Hordeum species (Poaceae) in southern Patagonia without genetic or spatial restriction.Tibet is one of the centers of domestication of cultivated barleyCharacterization of x-type high-molecular-weight glutenin promoters (x-HGP) from different genomes in Triticeae.Evolution of polyploid triticum wheats under cultivation: the role of domestication, natural hybridization and allopolyploid speciation in their diversification.Phylogenetic analysis of two single-copy nuclear genes revealed origin and complex relationships of polyploid species of Hordeum in Triticeae (Poaceae).On the allopolyploid origin and genome structure of the closely related species Hordeum secalinum and Hordeum capense inferred by molecular karyotyping.Genome origin, historical hybridization and genetic differentiation in Anthosachne australasica (Triticeae; Poaceae), inferred from chloroplast rbcL, trnH-psbA and nuclear Acc1 gene sequences.Progenitor-derivative relationships of Hordeum polyploids (Poaceae, Triticeae) inferred from sequences of TOPO6, a nuclear low-copy gene region.The evolutionary history of sea barley (Hordeum marinum) revealed by comparative physical mapping of repetitive DNA.A chloroplast genealogy of hordeum (poaceae): Long-term persisting haplotypes, incomplete lineage sorting, regional extinction, and the consequences for phylogenetic inference.The 5S DNA sequences in Hordeum bogdanii and in the H. brevisubulatum complex, and the evolution and the geographic dispersal of the diploid Hordeum species (Triticeae: Poaceae).Canary grasses (Phalaris, Poaceae): biogeography, molecular dating and the role of floret structure in dispersal.Global grass (Poaceae) success underpinned by traits facilitating colonization, persistence and habitat transformation.Multispeed genome diploidization and diversification after an ancient allopolyploidization.Codependence of repetitive sequence classes in genomes: phylogenetic analysis of 5S rDNA families in Hordeum (Triticeae: Poaceae).Gene capture from across the grass family in the allohexaploid Elymus repens (L.) Gould (Poaceae, Triticeae) as evidenced by ITS, GBSSI, and molecular cytogenetics.What determines biogeographical ranges? Historical wanderings and ecological constraints in the danthonioid grassesPhylogenetic perspectives on diversification and character evolution in the species-rich genusErysimum(Erysimeae; Brassicaceae) based on a densely sampled ITS approachWhen is enough, enough in phylogenetics? A case in point from Hordeum (Poaceae)
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P2860
Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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2006 թուականին հրատարակուած գիտական յօդուած
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2006 թվականին հրատարակված գիտական հոդված
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2006年の論文
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2006年論文
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2006年論文
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2006年論文
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2006年論文
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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P2860
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Multiple intercontinental dispersals shaped the distribution area of Hordeum (Poaceae)
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P2093
Frank R Blattner
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P304
P356
10.1111/J.1469-8137.2005.01610.X
P407
P577
2006-01-01T00:00:00Z