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首页> 外文期刊>Science of the total environment >Topsoil microbial community structure responds to land cover type and environmental zone in the Western Pacific region
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Topsoil microbial community structure responds to land cover type and environmental zone in the Western Pacific region

机译:表土微生物群落结构对西太平洋地区的土地覆盖类型和环境区作出反应

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摘要

Soil encompasses diverse microbial communities that are essential for fundamental ecosystem functions such as biogeochemical cycling. To better understand underlying biogeochemical processes, it is necessary to know the structure of soil archaeai and bacterial communities and their responses to edaphic and climate variables within and across various land cover types (LCTs) and environmental zones (ENZs). Here we sampled eighty-nine sites across five ENZs and four LCTs within the Western Pacific region. Through leveraging the second-generation sequencing of topsoil samples, we showed that α-diversity (taxonomic diversity) of archaea strongly varied within LCTs, whereas bacterial a-diversity was significantly controlled by both LCT and ENZ. Soil archaea and bacteria showed global niche differentiation associated with contrasting diversity responses to latitude and differential responses of microbial diversity patterns to edaphic and climate variables within LCTs and ENZs. In contrast to a-diversity, microbial β-diversity (the compositional dissimilarity between sites) was majorly governed by ENZs, particularly for archaea (P < 0.01). Our results highlight the importance of LCTs and ENZs for understanding soil microbial contributions to nutrient dynamics and ecosystem resilience under land-use intensification and climate change.
机译:土壤包括不同的微生物社区,这对于生物地良好化学循环等基本生态系统功能至关重要。为了更好地了解潜在的生物地球化学过程,有必要了解土壤古物和细菌社区的结构及其对各种陆地覆盖类型(LCTS)和环境区域(ENZS)内部和跨越各种陆地覆盖类型(LCT)和环境区的反应。在这里,我们在西太平洋地区的五个enzs和四个LCT上采样了八十九个网站。通过利用表土样品的第二代测序,我们表明,α-多样性(分类学分类)在LCT中强烈变化,而LCT和ENZ的细菌A-多样性显着控制。土壤古亚和细菌表明,与对比与微生物多样性模式的纬度和差异反应对比,与LCTS和enzs内的微生物多样性模式的纬度和差异反应相关的全局利基分化。与多样性相比,微生物β-多样性(位点之间的组成异化物质)主要受恩斯(P <0.01)的enzs,特别是eNZ(P <0.01)。我们的结果突出了LCTS和ENZ在土地利用强化和气候变化下了解对养分动力学和生态系统恢复力的土壤微生物贡献的重要性。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|144349.1-144349.11|共11页
  • 作者单位

    Department of Bioenvironmental Systems Engineering National Taiwan University Taiwan;

    Department of Bioenvironmental Systems Engineering National Taiwan University Taiwan;

    Department of Bioenvironmental Systems Engineering National Taiwan University Taiwan;

    SRI International Network and Resources Center (SRI-Rice) Cornell University USA;

    Ecolab Universite de Toulouse UPS INPT CNRS Toulouse France;

    Environmental Engineering and Management Asian Institute of Technology Thailand;

    Faculty of Environmental Earth Science Hokkaido University Japan;

    Department of Agricultural and Biosystems Engineering Faculty of Agricultural Technology Universitas Gadjah Mada Indonesia;

    Department of Bioenvironmental Systems Engineering National Taiwan University Taiwan;

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

    Archaea; Bacteria; Climate; Diversity; Land cover; Soil;

    机译:archaea;细菌;气候;多样性;陆地封面;土壤;

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