首页> 外文期刊>Molecular phylogenetics and evolution >Using a five-gene phylogeny to test morphology-based hypotheses of Smittium and allies, endosymbiotic gut fungi (Harpellales) associated with arthropods
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Using a five-gene phylogeny to test morphology-based hypotheses of Smittium and allies, endosymbiotic gut fungi (Harpellales) associated with arthropods

机译:使用五基因系统发育学来测试基于形态学的假蝇all和同伴假说,与节肢动物相关的内共生肠道真菌(Harpellales)

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摘要

Smittium, one of the first described genera of gut fungi, is part of a larger group of endosymbiotic microorganisms (Harpellales) that live predominantly in the digestive tracts of aquatic insects. As a diverse and species-rich taxon, Smittium has helped to advance our understanding of the gut fungi, in part due to the relative success of attempts to culture species of Smittium as compared to other members of Harpellales. Approximately 40% of the 81 known species of Smittium have been cultured. This is the first Smittium multigene dataset and phylogenetic analysis, using the 18S and 28S rRNA genes, as well as RPB1, RPB2, and MCM7 translated protein sequences. Several well-supported clades were recovered within Smittium. One includes the epitype S. mucronatum (the "True Smittium" clade), and another contains many species including S. simulii and S. orthocladii (the "Parasmittium" clade). Ancestral states were reconstructed for holdfast shape, thallus branching type, as well as asexual (trichospore) and sexual (zygospore) spore morphology. Two of these characters, holdfast shape and trichospore morphology, supported the split of the two main clades revealed by the molecular phylogeny, suggesting these are natural clades and these traits may have evolutionary and perhaps ecological significance. (C) 2014 Elsevier Inc. All rights reserved.
机译:mit是最早描述的肠道真菌属之一,是一大类共生共生微生物(Harpellales)的一部分,这些共生微生物主要生活在水生昆虫的消化道中。作为多样化和物种丰富的分类单元,Smittium帮助增进了我们对肠道真菌的了解,部分原因是与其他Harpellales成员相比,培养Smittium物种的尝试相对成功。在81种已知的known物种中,大约40%已被培养。这是第一个使用18S和28S rRNA基因以及RPB1,RPB2和MCM7翻译的蛋白质序列的Smittium多基因数据集和系统发育分析。在Smittium内发现了几个支撑​​良好的进化枝。一个包括表型S. mucronatum(“真假”枝)进化支,另一个包含许多物种,包括S. simulii和S. orthocladii(“寄生草”进化枝)。重建祖先状态以保持形状,shape状分支类型以及无性(毛孢子)和有性(合子孢子)的孢子形态。这些特征中的两个,即保持形状和单孢子形态,支持了分子系统发育揭示的两个主要进化枝的分裂,表明这些进化枝是天然进化枝,这些特征可能具有进化意义,甚至可能具有生态学意义。 (C)2014 Elsevier Inc.保留所有权利。

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