Molecular phylogenetics of the Ophiocordyceps sinensis-species complex lineage (Ascomycota, Hypocreales), with the discovery of new species and predictions of species distribution

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作者
Yongdong Dai
Siqi Chen
Yuanbing Wang
Yao Wang
Zhuliang Yang
Hong Yu
机构
[1] Yunnan University,Yunnan Herbal Laboratory, College of Ecology and Environmental Sciences
[2] Guizhou University of Traditional Chinese Medicine,School of Basic Medical Science
[3] Kunming Institute of Botany,CAS Key Laboratory for Plant Diversity and Biogeography of East Asia
[4] Chinese Academy of Sciences,Yunnan Key Laboratory for Fungal Diversity and Green Development
[5] Kunming Institute of Botany,undefined
[6] Chinese Academy of Sciences,undefined
来源
IMA Fungus | / 15卷
关键词
Multi-locus phylogeny; Species distribution modelling; Biodiversity corridor;
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中图分类号
学科分类号
摘要
Ophiocordyceps sinensis is a famous traditional Chinese medicine adapted to the alpine environment of the Qinghai-Tibet Plateau and adjacent regions. Clarification of the species diversity of Ophiocordyceps sinensis and its relatives could expand the traditional medicinal resources and provide insights into the speciation and adaptation. The study is prompted by the discovery of a new species, O. megala, described here from a biodiversity hotspot in the Hengduan Mountains, China. Combined morphological, ecological, and phylogenetic evidence supports its distinctiveness from O. sinensis, O. xuefengensis, and O. macroacicularis. Additionally, based on the phylogenetic construction of Ophiocordyceps, a special clade was focused phylogenetically on the more closely related O. sinensis complex, which was defined as the O. sinensis- species complex lineage. A total of 10 species were currently confirmed in this lineage. We made a comprehensive comparison of the sexual/asexual morphological structures among this species complex, distinguishing their common and distinctive features. Furthermore, using the method of species distribution modelling, we studied the species ocurrences in relation to climatic, edaphic, and altitudinal variables for the eight species in the O. sinensis-species complex, and determined that their potential distribution could extend from the southeastern Qinghai-Tibet Plateau to the Xuefeng Mountains without isolating barrier. Thus, the biodiversity corridor hypothesis was proposed around the O. sinensis-species complex. Our study highlights the phylogeny, species diversity, and suitable distribution of the O. sinensis-species complex lineage, which should have a positive implication for the resource discovery and adaptive evolution of this unique and valuable group.
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