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Composition and diversity of soil microbial communities in the alpine wetland and alpine forest ecosystems on the Tibetan Plateau

机译:藏高原高山湿地和高山森林生态系统土壤微生物社区的构成与多样性

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摘要

While the composition and diversity of soil microbial communities play a central and essential role in biogeo-chemical cycling of nutrients, they are known to be shaped by the physical and chemical properties of soils and various environmental factors. This study investigated the composition and diversity of microbial communities in 48 samples of seasonally frozen soils collected from 16 sites in an alpine wetland region (Lhasa River basin) and an alpine forest region (Nyang River basin) on the Tibetan Plateau using high-throughput sequencing that targeted the V3-V4 region of 16S rRNA gene. The dominant soil microbial phyla included Proteobacteria, Acidobacteria, and Actinobacteria in the alpine wetland and alpine forest ecosystems, and no significant difference was observed for their microbial composition. Linear discriminant analysis Effect Size (LEfSe) analysis showed that significant enrichment of Hymenobacteraceae and Cytophagales (belonging to Bacteroidetes) existed in the alpine wetland soils, while the alpine forest soils were enriched with Alphaproteobacteria (belonging to Proteobacteria), suggesting that these species could be potential biomarkers for alpine wetland and alpine forest ecosystems. Results of redundancy analysis (RDA) suggest that the microbial community diversity and abundance in the seasonally frozen soils on the Tibetan Plateau were mainly related to the total potassium in the alpine wetland ecosystem, and available potassium and soil moisture in the alpine forest ecosystem, respectively. In addition, function prediction analysis by Tax4Fun revealed the existence of potential functional pathways involved in human diseases in all soil samples. These results provide insights on the structure and function of soil microbial communities in the alpine wetland and alpine forest ecosystems on the Tibetan Plateau, while the potential risk to human health from the pathogenic microbes in the seasonally frozen soils deserves attention.
机译:虽然土壤微生物社区的组成和多样性在生物糖果化学循环中发挥着中央和基本作用,但是已知通过土壤的物理和化学性质和各种环境因素来形成。本研究调查了在高山湿地区(拉萨河流域)和高山高原上的16位点收集的48个季节性冻土样本中的微生物融合的季节性冻土样本的组成和多样性。使用高通量测序,藏高高原(Nyang River Reseau)靶向16S rRNA基因的V3-V4区域。占优势土壤微生物植物包括植物,抗酸杆菌和高山湿地和高山森林生态系统的抗菌菌,并且对于它们的微生物组合物没有显着差异。线性判别分析效果尺寸(lefse)分析表明,在高山湿地土壤中存在显着富集的Hymenobacteraceae和细菌学(属于细菌),而高山森林土壤富含α-植物群(属于植物),这表明这些物种可能是高山湿地和高山森林生态系统的潜在生物标志物。冗余分析结果(RDA)表明,西藏高原季节性冻土中的微生物群落多样性和丰度主要与高山湿地生态系统的总钾有关,以及高山森林生态系统中可用的钾和土壤水分的相关钾。此外,税收4FUN的功能预测分析揭示了所有土壤样本中涉及人类疾病的潜在功能途径的存在。这些结果提供了对藏高原高原湿地和高山森林生态系统的土壤微生物社区的结构和功能的见解,而季节性冷冻土壤中致病微生物的潜在风险应该受到关注。

著录项

  • 来源
    《Science of the total environment》 |2020年第10期|141358.1-141358.14|共14页
  • 作者单位

    State Key Laboratory of Organic Geochemistry Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China University of Chinese Academy of Sciences Beijing 100049 China MOE Key Laboratory for Earth Surface Processes College of Urban and Environmental Sciences Peking University Beijing 100871 China;

    MOE Key Laboratory for Earth Surface Processes College of Urban and Environmental Sciences Peking University Beijing 100871 China;

    State Key Laboratory of Organic Geochemistry Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China;

    MOE Key Laboratory for Earth Surface Processes College of Urban and Environmental Sciences Peking University Beijing 100871 China;

    MOE Key Laboratory for Earth Surface Processes College of Urban and Environmental Sciences Peking University Beijing 100871 China;

    MOE Key Laboratory for Earth Surface Processes College of Urban and Environmental Sciences Peking University Beijing 100871 China;

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

    Microbial community composition; Soil microbial diversity; Functional pathway; Seasonally frozen soils; Tibetan Plateau; Spatial variability;

    机译:微生物群落组成;土壤微生物多样性;功能途径;季节性冷冻的土壤;西藏高原;空间变异性;

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