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首页> 外文期刊>Evolution: International Journal of Organic Evolution >HOST SWITCHING PROMOTES DIVERSITY IN HOST-SPECIALIZED MYCOPARASITIC FUNGI: UNCOUPLED EVOLUTION IN THE BIATOROPSIS-USNEA SYSTEM
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HOST SWITCHING PROMOTES DIVERSITY IN HOST-SPECIALIZED MYCOPARASITIC FUNGI: UNCOUPLED EVOLUTION IN THE BIATOROPSIS-USNEA SYSTEM

机译:主机切换促进主机专用的真菌感染真菌的多样性:BIATOROPSIS-USNEA系统中非耦合的进化

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摘要

Fungal mycoparasitism-fungi parasitizing other fungi-is a common lifestyle in some basal lineages of the basidiomycetes, particularly within the Tremellales. Relatively nonaggressive mycoparasitic fungi of this group are in general highly host specific, suggesting cospeciation as a plausible speciation mode in these associations. Species delimitation in the Tremellales is often challenging because morphological characters are scant. Host specificity is therefore a great aid to discriminate between species but appropriate species delimitation methods that account for actual diversity are needed to identify both specialist and generalist taxa and avoid inflating or underestimating diversity. We use the Biatoropsis-Usnea system to study factors inducing parasite diversification. We employ morphological, ecological, and molecular data-methods including genealogical concordance phylogenetic species recognition (GCPSR) and the general mixed Yule-coalescent (GMYC) model-to assess the diversity of fungi currently assigned to Biatoropsis usnearum. The degree of cospeciation in this association is assessed with two cophylogeny analysis tools (ParaFit and Jane 4.0). Biatoropsis constitutes a species complex formed by at least seven different independent lineages and host switching is a prominent force driving speciation, particularly in host specialists. Combining ITS and nLSU is recommended as barcode system in tremellalean fungi.
机译:在担子菌的某些基底谱系中,特别是在银耳中,真菌霉菌副真菌-真菌寄生其他真菌-是一种常见的生活方式。该组的相对较无攻击性的真菌寄生真菌通常高度宿主特异性,表明在这些关联中共同物种形成是一种可能的物种形成模式。由于缺乏形态特征,因此在银耳中进行物种划界通常具有挑战性。因此,寄主特异性有助于区分物种,但需要使用能够说明实际多样性的适当物种划界方法来识别专家和通才分类单元,并避免夸大或低估多样性。我们使用Biatoropsis-Usnea系统研究诱导寄生虫多样化的因素。我们采用形态学,生态学和分子数据方法,包括家谱一​​致性系统发生种识别(GCPSR)和一般的混合圣诞树炭(GMYC)模型,以评估目前分配给松萝双胞菌的真菌的多样性。通过两种系统进化分析工具(ParaFit和Jane 4.0)评估这种关联中的共构程度。 Biatoropsis构成由至少七个不同独立谱系形成的物种复合体,宿主转换是驱动物种形成的重要力量,特别是在宿主专家中。建议将ITS和nLSU结合使用,作为银耳真菌的条形码系统。

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