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Sorghum rhizosphere effects reduced soil bacterial diversity by recruiting specific bacterial species under low nitrogen stress

机译:通过在低氮胁迫下募集特异性细菌物种,高粱根际效应降低土壤细菌多样性

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摘要

Rhizosphere microbiota play a pivotal role in promoting plant growth and defending against pathogens, but their responses to abiotic environmental stress remain largely elusive. Here, we investigated the influences of low-N stress on rhizosphere bacteria of six sorghum cultivars in a glasshouse experiment. The alpha diversity of bacteria (as revealed by Shannon diversity and Chaol richness indices) was remarkably lower in rhizosphere soils than in bulk soils, and was significantly higher under low-N stress than under N addition. Principal coordinates analysis revealed that the bacterial community compositions in rhizosphere soils were clearly separated from bulk soils, and the rhizosphere soils under low-N stress or with N fertilization were clearly separated, indicating that both rhizosphere effects and N fertilization impacted the rhizosphere bacterial community. Notably, the relative abundances of beneficial bacteria such as Bacillaceae and Streptomycetaceae significantly increased in rhizosphere soils under low-N stress, which had significantly positive correlations with the sorghum N uptake. The relative abundance of Nitrosomonadaceae in rhizosphere soils was significantly lower than that in bulk soils, while the relative abundance of Rhizobiaceae showed an opposite pattern. Taken together, our results suggested that sorghum rhizosphere effects can reduce soil bacterial diversity possibly through recruiting specific bacterial species under low N stress.
机译:根际Microbiota在促进植物生长和防止病原体的卫生方面发挥关键作用,但它们对非生物环境压力的反应仍然很大程度上是难以捉摸的。在这里,我们调查了低N胁迫对玻璃池实验中六个高粱品种根际细菌的影响。细菌的α多样性(如香农多样性和Chaol Richness Indics揭示)在根际土壤中比散装土壤显着降低,低于低压率明显高于N添加。主要坐标分析显示,根际土壤中的细菌群落组合物明显地与散装土壤分离,低压胁迫或施肥下的根际土壤明显分离,表明根际效应和N施肥都影响了根际细菌群落。值得注意的是,低压胁迫下的根际土壤中的有益细菌如杆菌和链霉菌的相对丰度显着增加,这与高粱的吸收具有显着的正相关性。根际土壤中亚硝基昔米菌的相对丰度明显低于散装土壤的相对丰度,而Rhizobiaceae的相对丰度显示出相反的图案。我们的结果表明,高粱根际效应可以通过在低N应激下募集特异性细菌种类来降低土壤细菌多样性。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|144742.1-144742.9|共9页
  • 作者单位

    College of Resources and Environment Snanxi Agricultural University Taiyuan 030031 China;

    College of Resources and Environment Snanxi Agricultural University Taiyuan 030031 China;

    College of Resources and Environment Snanxi Agricultural University Taiyuan 030031 China;

    College of Resources and Environment Snanxi Agricultural University Taiyuan 030031 China;

    College of Resources and Environment Snanxi Agricultural University Taiyuan 030031 China;

    College of Resources and Environment Snanxi Agricultural University Taiyuan 030031 China;

    School of Geographical Sciences Fujian Normal University Fuzhou 350007 China;

    School of Agriculture and Food Faculty of Veterinary and Agricultural Sciences The University of Melbourne Victoria 3010 Australia;

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

    Low-N stress Rhizosphere effect Sorghum rhizosphere Nitrogen fertilization Bacterial community;

    机译:低压胁迫根际效应高粱根际氮肥细菌群落;

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