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Evidence for strong inter- and intracontinental phylogeographic structure in Amanita muscaria, a wind-dispersed ectomycorrhizal basidiomycete
Authors:Geml József  Tulloss Rodham E  Laursen Gary A  Sazanova Nina A  Taylor D L
Institution:aInstitute of Arctic Biology, University of Alaska Fairbanks, 311 Irving I Building, 902 N. Koyukuk Drive, P.O. Box 757000, Fairbanks, AK 99775-7000, USA;bP.O. Box 57, Roosevelt, NJ 08555-0057, USA;cLaboratory of Botany, Institute of Biological Problems of the North, Far East Branch of Russian Academy of Sciences, Portovaya Street 18, Magadan 685000, Russia
Abstract:A growing number of molecular studies show that many fungi have phylogeographic structures and that their distinct lineages are usually limited to different continents. As a conservative test of the extent to which wind-dispersed mycorrhizal fungi may exhibit phylogeographic structure, we chose to study Amanita muscaria, a host-generalist, widespread, wind-dispersed fungus. In this paper, we document the existence of several distinct phylogenetic species within A. muscaria, based on multilocus DNA sequence data. According to our findings, A. muscaria has strong intercontinental genetic disjunctions, and, more surprisingly, has strong intracontinental phylogeographic structure, particularly within North America, often corresponding to certain habitats and/or biogeographic provinces. Our results indicate that the view of A. muscaria as a common, widespread, easily identifiable, ecologically plastic fungus with a wide niche does not correctly represent the ecological and biological realities. On the contrary, the strong associations between phylogenetic species and different habitats support the developing picture of ecoregional endemisms and relatively narrow to very narrow niches for some lineages.
Keywords:Amanita muscaria  β  -tubulin gene  Fungi  Internal transcribed spacer region  Phylogeography  Ribosomal large subunit gene  Translation elongation factor 1-alpha gene
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