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- W4386804462 abstract "The population genetic structure of temperate plants in the northern hemisphere was significantly influenced by the Quaternary climate oscillations. A species' biological characteristics and ecological niche are significant elements that can affect its phylogeographic history. We adopted the cold-tolerant, anemophilous and anemochorous tree, <italic>Populus koreana</italic>, as a model species to examine the impact of historical climate changes and biological characteristics on the evolutionary history of vegetation in Northeast Asia throughout the Quaternary period. The results showed that there is moderate genetic differentiation among populations of <italic>P. koreana</italic> based on nuclear microsatellite and plastid markers, and a phylogeographic structure is lacking. Demographic analyses and ecological niche modeling suggested that <italic>P. koreana</italic> is likely to have experienced a bottleneck around the LGM, followed by a rapid and continued range expansion coupled with a northward migration from the LGM to the MH, present, and 2050. Notably, there were several separate refugia present throughout the range of <italic>P. koreana</italic> in Northeast Asia during the last glacial maximum (LGM). These refugia include two widely recognized ones located in the Changbai Mountains and the southern Korean Peninsula. We also unexpectedly found a previously unknown one in the northern Greater Khingan Mountains. Our study enhances the comprehension of the phylogeographic history of plant species in Northeast Asia, providing novel insights into the Greater Khingan Mountains as glacial refugia for a cold-tolerant tree species. The aforementioned findings provide valuable insights on the Quaternary historical patterns of temperate forests in the East Asia." @default.
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- W4386804462 date "2023-01-01" @default.
- W4386804462 modified "2023-10-16" @default.
- W4386804462 title "Phylogeography of <i>Populus koreana</i> reveals an unexpected glacial refugium in Northeast Asia" @default.
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- W4386804462 doi "https://doi.org/10.48130/fr-2023-0023" @default.
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