geoglossomyetes类的比较基因组学和系统基因组学研究为Pezizomycotina的生态特化和系统分类提供了见解。

IF 2.6 2区 生物学 Q2 MYCOLOGY Mycologia Pub Date : 2023-07-01 DOI:10.1080/00275514.2023.2186743
Tina Melie, Stacy Pirro, Andrew N Miller, Stacey D Smith, Kyle S Schutz, C Alisha Quandt
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引用次数: 1

摘要

尽管它们在全球范围内普遍存在,但对地舌菌纲(Pezizomycotina, Ascomycota)成员的系统和生态学研究尚不充分。这些真菌长期以来被认为是腐坏的,因为它们出现在凋落叶和土壤中或附近。此外,它们与其他生物体缺乏明显的联系,这加强了这种看法。然而,对菊苣灌木附近孢子囊的观察产生了另一种假设,即土藓菌的成员可能形成菊苣菌根或外生菌根。然而,这一说法尚未通过显微镜或基于扩增子的根群落研究得到证实。因此,我们目前对它们生态的了解是基于粗略的观察。本研究提出了与生态位相关的基因组特征的比较分析,以探讨该类中菌根或外生菌根生态学的假设。我们比较了6个新测序的geoglossomyetes基因组与代表Pezizomycotina特定生态的真菌基因组的碳水化合物活性酶(CAZyme)和次级代谢物含量。我们的分析表明,CAZyme和次级代谢物的含量模式与Pezizomycotina的外生菌根(EcM)成员一致。具体来说,我们发现了cazyme编码基因和次级代谢物簇的减少,这表明了一种互惠生态。我们的工作包括迄今为止对Pezizomycotina的系统基因组研究进行的最广泛的分类群采样。它代表了地理舌孢菌类的第一个功能基因组和基因组规模的系统发育研究,并提高了这些未被研究的真菌的生态学和进化的基础知识。
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Comparative genomics and phylogenomic investigation of the class Geoglossomycetes provide insights into ecological specialization and the systematics of Pezizomycotina.

Despite their global presence and ubiquity, members of the class Geoglossomycetes (Pezizomycotina, Ascomycota) are understudied systematically and ecologically. These fungi have long been presumed saprobic due to their occurrence in or near leaf litter and soils. Additionally, they lack an apparent association with other organisms, reinforcing this perception. However, observations of sporocarps near ericaceous shrubs have given rise to an alternative hypothesis that members of Geoglossomycetes may form ericoid mycorrhizae or ectomycorrhizae. This claim, however, has yet to be confirmed via microscopy or amplicon-based studies examining root communities. As a result, our current understanding of their ecology is based on cursory observations. This study presents a comparative analysis of genomic signatures related to ecological niche to investigate the hypothesis of an ericoid mycorrhizal or ectomycorrhizal ecology in the class. We compared the carbohydrate-active enzyme (CAZyme) and secondary metabolite contents of six newly sequenced Geoglossomycetes genomes with those of fungi representing specific ecologies across Pezizomycotina. Our analysis reveals CAZyme and secondary metabolite content patterns consistent with ectomycorrhizal (EcM) members of Pezizomycotina. Specifically, we found a reduction in CAZyme-encoding genes and secondary metabolite clusters that suggests a mutualistic ecology. Our work includes the broadest taxon sampling for a phylogenomic study of Pezizomycotina to date. It represents the first functional genomic and genome-scale phylogenetic study of the class Geoglossomycetes and improves the foundational knowledge of the ecology and evolution of these understudied fungi.

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来源期刊
Mycologia
Mycologia 生物-真菌学
CiteScore
6.20
自引率
3.60%
发文量
56
审稿时长
4-8 weeks
期刊介绍: International in coverage, Mycologia presents recent advances in mycology, emphasizing all aspects of the biology of Fungi and fungus-like organisms, including Lichens, Oomycetes and Slime Molds. The Journal emphasizes subjects including applied biology, biochemistry, cell biology, development, ecology, evolution, genetics, genomics, molecular biology, morphology, new techniques, animal or plant pathology, phylogenetics, physiology, aspects of secondary metabolism, systematics, and ultrastructure. In addition to research articles, reviews and short notes, Mycologia also includes invited papers based on presentations from the Annual Conference of the Mycological Society of America, such as Karling Lectures or Presidential Addresses.
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