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Dynamic changes of soil microbial community in Pinus sylvestris var. mongolica plantations in the Mu Us Sandy Land

机译:松树Sylvestris var中土壤微生物群落的动态变化。 Mu US美国沙地的蒙古种植园

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摘要

Soil microbial communities maintain multiple ecosystem functions in terrestrial ecosystems. The response of soil microbial communities to vegetation restoration in desertification environments is still poorly understood. Therefore, the purpose of our study was to evaluate the dynamic changes of the soil microbial community during the growth of Pinus sylvestris var. mongolic (P. sylvestris) plantations. We collected soil samples from five P. sylvestris plantations with different stand age. High-throughput sequencing was performed to determine the microbial community structure. The dynamic relationship between soil microbial community and edaphic factors was analyzed using the co-occurrence network, mantel test and partial least squares path modeling. The results showed that the soil microbial alpha diversity and community structure were significantly various among the plantations (P < 0.001). The number of nodes and edges in microbial co-occurrence network gradually decreased and the interrelationships between species became weak with stand age. The Available phosphorus was the most significant factor affecting the structure of bacterial community (R~2 = 0.952), while the total phosphorus was the most significant factor affecting the structure of fungal community (R~2 = 0.745). However, soil moisture had no significant effect on the microbial community. pH (0.73) and available nitrogen (0.91) had the largest positive total effects on bacterial and fungal community, respectively. Stand age (-0.65) was an indirect factor with the largest negative total effects on the bacterial community. Therefore, we concluded that the soil microbial community was not limited by soil moisture during the natural restoration process of P. sylvestris plantations in the desertification environment and the phosphorus utilization efficiency played a leading role in shaping the soil microbial community.
机译:土壤微生物社区在陆地生态系统中维持多种生态系统功能。土壤微生物公共对荒漠化环境中植被恢复的反应仍然很差。因此,我们研究的目的是评估土壤微生物群落在Pinus Sylvestris var的生长过程中的动态变化。蒙古(P. Sylvestris)种植园。我们从不同的立场年龄收集来自五个毒素的土壤样品。进行高通量测序以确定微生物群落结构。利用共进发生网络,搭式测试和偏最小二乘路径建模分析了土壤微生物群落与仿镜因子之间的动态关系。结果表明,土壤微生物α多样性和群落结构在种植园中显着各种(P <0.001)。微生物共同发生网络中的节点和边缘的数量逐渐减少,并且物种之间的相互关系变得越来越弱。可用的磷是影响细菌群落结构的最重要因素(R〜2 = 0.952),而总磷是影响真菌群落结构的最重要因素(R〜2 = 0.745)。然而,土壤水分对微生物群落没有显着影响。 pH(0.73)和可用的氮(0.91)分别对细菌和真菌群落具有最大的阳性总影响。站立年龄(-0.65)是对细菌群落最大的负面总影响的间接因素。因此,我们得出结论,土壤微生物群落在荒漠化环境中P.Sylvestris种植园的自然恢复过程中的土壤水分受到限制,磷利用效率在塑造土壤微生物群落中发挥着主导作用。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112306.1-112306.11|共11页
  • 作者单位

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau College of Natural Resources and Environment Northwest A&F University Yangling 712100 China Research Center on Soil & Water Conservation Institute of Soil and Water Conservation Chinese Academy of Sciences and Ministry of Water Resources Yangling 712100 China;

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau College of Natural Resources and Environment Northwest A&F University Yangling 712100 China;

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau College of Natural Resources and Environment Northwest A&F University Yangling 712100 China;

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau College of Natural Resources and Environment Northwest A&F University Yangling 712100 China;

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau College of Natural Resources and Environment Northwest A&F University Yangling 712100 China;

    State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau College of Natural Resources and Environment Northwest A&F University Yangling 712100 China Research Center on Soil & Water Conservation Institute of Soil and Water Conservation Chinese Academy of Sciences and Ministry of Water Resources Yangling 712100 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Desertification; Stand age; Bacteria; Fungi; Soil moisture; Phosphorus;

    机译:荒漠化;立场;细菌;菌类;土壤湿度;磷;

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