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对中国红河地区定殖于枯死木本小枝上的微真菌系统学的洞察。

Insight into the Systematics of Microfungi Colonizing Dead Woody Twigs of in Honghe (China).

作者信息

Wanasinghe Dhanushka N, Mortimer Peter E, Xu Jianchu

机构信息

CAS Key Laboratory for Plant Biodiversity and Biogeography of East Asia (KLPB), Kunming Institute of Botany, Chinese Academy of Science, Kunming 650201, Yunnan, China.

World Agroforestry, East and Central Asia, 132 Lanhei Road, Kunming 650201, Yunnan, China.

出版信息

J Fungi (Basel). 2021 Mar 3;7(3):180. doi: 10.3390/jof7030180.

Abstract

Members of are broadly distributed across subtropical and tropical areas of southwest and southern China. This host provides multiple substrates that can be richly colonized by numerous undescribed fungal species. There is a severe lack of microfungal studies on in China, and consequently, the diversity, phylogeny and taxonomy of these microorganisms are all largely unknown. This paper presents two new genera and four new species in three orders of Dothideomycetes gathered from dead twigs of in Honghe, China. All new collections were made within a selected area in Honghe from a single sp. This suggests high fungal diversity in the region and the existence of numerous species awaiting discovery. Multiple gene sequences (non-translated loci and protein-coding regions) were analysed with maximum likelihood and Bayesian analyses. Results from the phylogenetic analyses supported placing gen. et sp. in the Teratosphaeriaceae family. Analysis of sequences resulted in sp. nov., while analysed Lophiostomataceae sequences revealed gen. et sp. nov. Finally, phylogeny based on a combined dataset of pyrenochaeta-like sequences demonstrates strong statistical support for placing sp. nov. in Parapyrenochaetaceae. Morphological and updated phylogenetic circumscriptions of the new discoveries are also discussed.

摘要

[该属成员广泛分布于中国西南部和南部的亚热带和热带地区。这种寄主提供了多种基质,许多未描述的真菌物种可以在其上大量定殖。中国对[该属]的微真菌研究严重不足,因此,这些微生物的多样性、系统发育和分类学在很大程度上都是未知的。本文介绍了从中国红河地区[该属植物]的枯枝上采集的座囊菌纲三个目中的两个新属和四个新物种。所有新标本均采自红河地区一个选定区域内的单一[该属]物种。这表明该地区真菌多样性高,存在许多有待发现的物种。利用最大似然法和贝叶斯分析法对多个基因序列(非翻译位点和蛋白质编码区)进行了分析。系统发育分析结果支持将[新属及新物种]置于球腔菌科。对[某基因]序列的分析产生了[新物种],而对长喙壳科序列的分析揭示了[新属及新物种]。最后,基于类柄孢壳菌序列的组合数据集的系统发育分析为将[新物种]置于拟柄孢壳科提供了有力的统计支持。还讨论了新发现的形态学特征和更新后的系统发育界定。]

需注意,原文中部分属名等关键信息未明确给出具体内容,翻译时用[该属]等进行了模糊处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3a5/7999967/2033dabfac39/jof-07-00180-g001.jpg

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