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首页> 外文期刊>Journal of soil & sediments >Only mass migration of fungi runs through the biotopes of soil, phyllosphere, and feces
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Only mass migration of fungi runs through the biotopes of soil, phyllosphere, and feces

机译:真菌的大规模迁移通过土壤,文学圈和粪便的生物缺失

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摘要

Purpose Understanding the microbial linkages among the soils, plants, and animals is crucial for maintaining the balance of the grazed grassland ecosystem. However, previous studies always focused on the biotopes of soil, phyllosphere, and feces separately and little has been known about microbial distributions and migrations among these biotopes. In this study, systematic surveys about the overlap and differentiation among various microbiotas of biotopes and how the environmental filter on microorganisms served for the ecosystem were conducted. Materials and methods Soil, phyllosphere, and feces samples were collected from grazed and ungrazed grassland in Inner Mongolia, China. High-throughput sequencing and qPCR were employed to obtain the genome data. The results were analyzed by various statistical tools such as genomic analysis and machine learning classification to describe the disparities and linkages among the microbiotas of three biotopes. Results and discussion Our findings revealed that the biotopes drove the distinct microbial community assemblages with various richness, beta-diversity and composition. The substantial overlaps between soil and phyllosphere in fungi, bacteria and archaea indicated that soil played the role of the microbial source for the phyllosphere. Communal OTUs could be found between phyllosphere and feces. Nevertheless, Ascomycota were the only microorganisms migrating among all the biotopes massively. After the long-term impact of feces via grazing, the soil and phyllosphere microbiota also altered significantly. Conclusions Biotopes drive the discrepancy of microbiota distribution among the soil, phyllosphere, and feces. Soil could potentially perform as the microbial reservoir for the phyllosphere. The phyllosphere plays the role of bridge to link soil and feces biotope through its fluctuated condition. However, there was only fungal migration running through the ecosystem to link all the biotopes. These findings promoted our understanding of the biotope contribution to microbial migration and improved the knowledge of microbial linkages in the grazed grassland ecosystem.
机译:目的理解土壤,植物和动物之间的微生物联系对于维持草地生态系统的平衡至关重要。然而,之前的研究总是专注于土壤,文学圈和粪便的生物缺失,并且在这些生物上的微生物分布和迁移很少。在这项研究中,对生物缺陷的各种微生物分子的重叠和分化进行系统调查以及如何进行生态系统所服务的微生物的环境过滤器。从内蒙古内蒙古的放牧和未加工的草原收集了材料和方法土壤,文学和粪便样本。使用高通量测序和QPCR以获得基因组数据。结果通过各种统计工具进行了分析,例如基因组分析和机器学习分类,以描述三个生物缺陷的微生物瘤之间的差异和联系。结果和讨论我们的研究结果显示,生物缺陷使不同的微生物群落组合具有各种丰富性,β-多样性和组成。真菌,细菌和古代土壤和文学之间的实质重叠表明,土壤发挥了神奇源的微生物来源的作用。公共OTU可以在文学和粪便之间找到。然而,Ascomcota是唯一迁移所有生物缺陷的微生物。通过放牧粪便的长期影响,土壤和文学微生物群也显着改变。结论生物缺陷在土壤,文学层和粪便中驱动微生物群分布的差异。土壤可能潜在地作为文学岩系的微生物储层。该桥梁通过其波动条件发挥桥梁与粪便链接土壤和粪便的作用。但是,只有生态系统运行的真菌迁移链接所有生物缺陷。这些调查结果促进了我们对微生物迁移的生物素贡献的理解,并改善了牧草生态系统中微生物联系的知识。

著录项

  • 来源
    《Journal of soil & sediments》 |2021年第2期|1151-1164|共14页
  • 作者单位

    Univ Chinese Acad Sci Coll Resources & Environm 19 A Yuquan Rd Beijing 100049 Peoples R China|Griffith Univ Environm Futures Res Inst Nathan Qld 4111 Australia|Griffith Univ Sch Environm & Sci Nathan Qld 4111 Australia;

    Univ ChineseAcademy Sci Coll Life Sci 19 A Yuquan Rd Beijing 100049 Peoples R China|Chinese Acad Sci CAS Ctr Excellence Tibetan Plateau Earth Sci Beijing 100101 Peoples R China;

    Griffith Univ Australian Rivers Inst Nathan Qld 4111 Australia|Griffith Univ Sch Engn Nathan Qld 4111 Australia;

    Griffith Univ Environm Futures Res Inst Nathan Qld 4111 Australia|Griffith Univ Sch Environm & Sci Nathan Qld 4111 Australia;

    Univ Chinese Acad Sci Coll Resources & Environm 19 A Yuquan Rd Beijing 100049 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biotope; Microbial migration; Soil microbiota; Phyllosphere microbiota; Fecal microbiota;

    机译:生物素;微生物迁移;土壤微生物群;文学微生物群;粪便微生物;

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