Ecological and physical barriers shape genetic structure of the Alpine porcini (Boletus reticuloceps)

被引:0
|
作者
Bang Feng
Jian Wei Liu
Jianping Xu
Kuan Zhao
Zai Wei Ge
Zhu L. Yang
机构
[1] Kunming Institute of Botany,Key Laboratory for Plant Diversity and Biogeography of East Asia
[2] Chinese Academy of Sciences,Department of Biology
[3] University of Chinese Academy of Sciences,undefined
[4] McMaster University,undefined
来源
Mycorrhiza | 2017年 / 27卷
关键词
Phylogeography; Disjunction; Physical isolation; Climatic heterogeneity; Dispersal; Host preference;
D O I
暂无
中图分类号
学科分类号
摘要
The Alpine porcini, Boletus reticuloceps, is an ectomycorrhizal mushroom distributed in subalpine areas of Southwest China, central China, and Taiwan Island. This distribution pattern makes it an ideal organism to infer how ectomycorrhizal fungi have reacted to historical tectonic and climatic changes, and to illustrate the mechanism for the disjunction of organisms between Southwest China and Taiwan. In this study, we explored the phylogeographic pattern of B. reticuloceps by microsatellite genotyping, DNA sequencing, ecological factor analysis, and species distribution modeling. Three genetic groups from the East Himalayas (EH), northern Hengduan Mountains (NHM), and southern Hengduan Mountains (SHM), were identified. The earlier divergent SHM group is found under Abies in moister environments, whereas the EH and NHM groups, which are physically separated by the Mekong-Salween Divide, are found mainly under Picea in drier environments. Samples from Taiwan showed a close relationship with the SHM group. High mountains did not form dispersal barriers among populations in each of the EH, NHM, and SHM groups, probably due to the relatively weak host specificity of B. reticuloceps. Our study indicated that ecological heterogeneity could have contributed to the divergence between the SHM and the NHM-EH groups, while physical barriers could have led to the divergence of the NHM and the EH groups. Dispersal into Taiwan via Central China during the Quaternary glaciations is likely to have shaped its disjunct distribution.
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页码:261 / 272
页数:11
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