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Analysis of Soil Fungal and Bacterial Communities in Tianchi Volcano Crater Northeast China

机译:天池火山火山口土壤真菌和细菌社区分析东北

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摘要

High-altitude volcanoes, typical examples of extreme environments, are considered of particular interest in biology as a possible source of novel and exclusive microorganisms. We analyzed the crater soil microbial diversity of Tianchi Volcano, northeast China, by combining molecular and morphological analyses of culturable microbes, and metabarcoding based on Illumina sequencing, in order to increase our understanding of high-altitude volcanic microbial community structure. One-hundred and seventeen fungal strains belonging to 51 species and 31 genera of Ascomycota, Basidiomycota and Mucoromycota were isolated. Penicillium, Trichoderma, Cladosporium, Didymella, Alternaria and Fusarium dominated the culturable fungal community. A considerable number of isolated microbes, including filamentous fungi, such as Aureobasidium pullulans and Epicoccum nigrum, yeasts (Leucosporidium creatinivorum), and bacteria (Chryseobacterium lactis and Rhodococcus spp.), typical of high-altitude, cold, and geothermal extreme environments, provided new insights in the ecological characterization of the investigated environment, and may represent a precious source for the isolation of new bioactive compounds. A total of 1254 fungal and 2988 bacterial operational taxonomic units were generated from metabarcoding. Data analyses suggested that the fungal community could be more sensitive to environmental and geographical change compared to the bacterial community, whose network was characterized by more complicated and closer associations.
机译:高空火山,极端环境的典型例子被认为是对生物学的特别兴趣,作为新的新颖和专用的微生物来源。我们通过组合培养微生物的分子和形态学分析,分析了东北天池火山的火山口土壤微生物多样性,并基于Illumina测序的沟通,以提高我们对高原火山微生物群落结构的理解。分离属于51种和31种Ascomycota,蛇霉菌和粘膜霉菌的一百和十七个真菌菌株。青霉素,Trichoderma,囊孢子,脱蛋白酶,alertaria和镰刀菌占培养的真菌群落。具有相当数量的分离的微生物,包括丝状真菌,例如金属咔啉藜和胫骨菌,酵母(白膦酸肌钙菌)和细菌(乳酰基菌乳酸和菱乳糖SPP。),提供的典型的高空,冷和地热极度环境新的洞察于调查环境的生态特征,并且可以代表孤立新的生物活性化合物的珍贵来源。共有1254个真菌和2988个细菌运作的分类单体,从Metaboding产生。数据分析表明,与细菌群落相比,真菌群落对环境和地理变化更敏感,其网络以更加复杂和更接近的协会为特征。

著录项

  • 期刊名称 Life
  • 作者

    Xiao Wang; Lorenzo Pecoraro;

  • 作者单位
  • 年(卷),期 2021(11),4
  • 年度 2021
  • 页码 280
  • 总页数 18
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:真菌;细菌;微生物群落;火山土;高空;极端环境;illumina测序;微生物网络分析;

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