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Armillaria Root-Rot Pathogens: Species Boundaries and Global Distribution

机译:蜜环菌根腐病病原菌:物种边界和全球分布

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摘要

This review considers current knowledge surrounding species boundaries of the Armillaria root-rot pathogens and their distribution. In addition, a phylogenetic tree using translation elongation factor subunit 1-alpha (tef-1α) from isolates across the globe are used to present a global phylogenetic framework for the genus. Defining species boundaries based on DNA sequence-inferred phylogenies has been a central focus of contemporary mycology. The results of such studies have in many cases resolved the biogeographic history of species, mechanisms involved in dispersal, the taxonomy of species and how certain phenotypic characteristics have evolved throughout lineage diversification. Such advances have also occurred in the case of Armillaria spp. that include important causal agents of tree root rots. This commenced with the first phylogeny for Armillaria that was based on IGS-1 (intergenic spacer region one) DNA sequence data, published in 1992. Since then phylogenies were produced using alternative loci, either as single gene phylogenies or based on concatenated data. Collectively these phylogenies revealed species clusters in Armillaria linked to their geographic distributions and importantly species complexes that warrant further research.
机译:这篇评论认为当前的知识围绕蜜环菌根腐病菌的物种边界及其分布。此外,使用来自全球分离株的翻译延伸因子亚基1-alpha(tef-1α)的系统树,为该属提供了一个整体的系统发育框架。基于DNA序列推断的系统发育来定义物种边界一直是当代真菌学的重点。这些研究的结果在许多情况下都解决了物种的生物地理历史,涉及分散的机制,物种的分类学以及在整个谱系多样化中某些表型特征如何演变的问题。在蜜环菌属物种中也出现了这种进步。其中包括重要的树根腐烂病因。这始于1992年发布的基于IGS-1(基因间隔区一个)DNA序列数据的蜜环菌的第一个系统发育。从那时起,使用替代基因座(无论是单基因系统发育还是基于串联数据)产生了系统发育。这些系统发育共同揭示了蜜环菌中的物种簇与其地理分布有关,重要的是需要进一步研究的物种复合体。

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