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Changes in the integrated functional stability of microbial community under chemical stresses and the impacting factors in field soils

机译:田间土壤化学胁迫下微生物群落综合功能稳定性及其影响因素的变化

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摘要

The functional stability (FS) of soil microbial communities contributes in a fundamental way to maintaining soil ecosystem functioning and services, when environmental disturbances, e.g. contamination arise. While, the mechanisms enabling soil microbial communities to remain stable under stresses are not clear. Thus, this work aims at investigating changes in integrated microbial FS under long-term stress of heavy metals (FSHM) and subsequent herbicide siduron (FSsid). A second objective is to determine which factors affect the FS of microbial communities. The results show that the overall function, alpha diversity, and composition of microbial communities are affected significantly by the presence of heavy metals and herbicide siduron. The loss of biodiversity induced by heavy metal does not appear to impair the functions of microbial communities or their functional stability in response to the additional stress of siduron. Whereas, the change of microbial community composition, e.g., the decrease of the gram positive/gram negative ratio triggered by the adaption and tolerance process to the pre-disturbance of heavy metals, is the central factor governing FS. Soil organic matter content, the concentration of heavy metals and the C/N value are the dominant abiotic factors affecting FS through direct effect on microbial activities involved in functional processes and indirect effect on microbial community composition. Our study highlights that the structural composition of soil microbial community is more important than the diversity of microbial species to explain the functional stability of microbial communities under chemical stresses, and that a number of soil properties and the disturbance history also play a decisive role. Thus, the functional stability of soil microbial community can be used as a feasible and pragmatic indicator to assess the overarching responses to environmental stresses at ecological system level.
机译:土壤微生物群落的功能稳定性(FS)从根本上为维护土壤生态系统的功能和服务提供了基础,例如环境干扰产生污染。然而,使土壤微生物群落在压力下保持稳定的机制尚不清楚。因此,这项工作旨在研究重金属(FSHM)和后续除草剂siduron(FSsid)的长期胁迫下整合微生物FS的变化。第二个目标是确定哪些因素会影响微生物群落的功能。结果表明,重金属和除草剂siduron的存在显着影响了微生物群落的整体功能,α多样性和组成。重金属引起的生物多样性的丧失似乎并未损害微生物群落的功能或响应于siduron附加胁迫而产生的功能稳定性。而微生物群落组成的变化,例如由适应和耐受过程对重金属的预扰动引起的革兰氏阳性/革兰氏阴性比率的降低,是控制FS的主要因素。土壤有机质含量,重金属浓度和C / N值是影响FS的主要非生物因素,它们直接影响功能过程中涉及的微生物活动,并间接影响微生物群落组成。我们的研究强调,土壤微生物群落的结构组成比微生物物种的多样性更重要,这可以解释微生物群落在化学胁迫下的功能稳定性,而且土壤的许多性质和干扰历史也起着决定性的作用。因此,土壤微生物群落的功能稳定性可以作为一种可行的,实用的指标来评估生态系统水平上对环境压力的总体响应。

著录项

  • 来源
    《Ecological indicators》 |2020年第3期|105919.1-105919.10|共10页
  • 作者

  • 作者单位

    Chinese Acad Sci Res Ctr Ecoenvironm Sci State Key Lab Urban & Reg Ecol Beijing 100085 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci Res Ctr Ecoenvironm Sci State Key Lab Urban & Reg Ecol Beijing 100085 Peoples R China;

    Nanjing Inst Environm Sci State Environm Protect Key Lab Soil Environm Mana Minist Ecol & Environm Nanjing 210042 Jiangsu Peoples R China;

    Univ Paris Saclay AgroParisTech UMR ECOSYS Ave Lucien Bretignieres F-78850 Thiverval Grignon France|Univ Santiago Compostela Dept Soil Sci & Agr Chem Santiago De Compostela 15782 Spain;

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

    Chemical stress; Soil microbial community composition; Soil microbial community function; Stability; Biodiversity;

    机译:化学应力土壤微生物群落组成;土壤微生物群落功能;稳定性;生物多样性;

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