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Soil potentials to resist continuous cropping obstacle: Three field cases

机译:土壤潜力抵抗连续种植障碍:三个现场案例

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摘要

Continuous cropping has become the most common system in intensive, modem agricultural production; however, obstacles often appear in continuous cropping patterns after a few years of use. There have been several studies about the impacts of continuous cropping on soil microbial, but few about differences between soil experiencing continuous cropping obstacles and those where such obstacles had been resisted. Here, after ten or twenty years of continuous tobacco cropping, we collected soil samples investigating discrepancies in soil property and bacterial community between soils experiencing continuous cropping obstacles and soils where the obstacles were resisted providing insight into preventing and controlling continuous cropping obstacles. Results showed that soil organic matter (SOM), available phosphorus (AP), total nitrogen (TN), nitrate-N (NO_3~--N), and bacterial diversity of samples where continuous cropping obstacles had been resisted were significantly higher than those where continuous cropping obstacles were present. Besides, SOM, AP, TN, and Ammonium-N (NH_4~+-N) considerably affected the bacterial community. Among all variables, NH_4~+-N explained the largest proportion of bacterial community variation. Molecular ecological networks were used to putatively identify keystone taxa, including Acidobacteria Gp1, Acidobacteria Gp2, Acidobacteria Gp16, and WPS-1_generaJncenae_sedis. Their relative abundance significantly changed between the two conditions. Overall, our results indicate that decreases in soil nutrient content and bacterial diversity, and significant changes in some keystone taxa abundances may be important factors leading to increased soil-bome diseases and reduced tobacco production potential or quality. Thus, during agricultural production, we could regulate the stability of the soil-crop-microbial ecological system via crop rotation, intercropping, or the use of specialized bio-fertilizers and soil conditioners to mitigate continuous cropping obstacles.
机译:连续作业已成为密集型,调制解调器农业生产中最常见的系统;然而,几年后,障碍通常在连续的裁剪模式中出现。有几次关于连续种植对土壤微生物的影响的研究,但少数关于经历连续种植障碍的土壤差异以及抵抗这种障碍的差异。在此,在连续十二年或二十年的连续烟草作物之后,我们收集了在经历持续种植障碍物的土壤之间调查土壤性质和细菌群体的差异和障碍的差异,抵制防止和控制连续种植障碍的障碍。结果表明,土壤有机物质(SOM),可用磷(AP),总氮(TN),硝酸盐-N(NO_3〜 - N),以及抵抗连续种植障碍的样品的细菌多样性显着高于那些在存在连续种植障碍的情况下。此外,SOM,AP,TN和铵-N(NH_4〜+ -N)显着影响了细菌群落。在所有变量中,NH_4〜+ -N解释了细菌群落变异的最大比例。分子生态网络用于借助于识别梯形毒素,包括抗抗体癌GP1,抗酸杆菌GP2,抗酸杆菌GP16和WPS-1_GENERAJNCENAE_SEDIS。在两个条件下,它们的相对丰富显着变化。总体而言,我们的结果表明,土壤养分含量和细菌多样性降低,一些梯形曲征大量的重大变化可能是导致土壤 - BOME疾病增加和减少烟草生产潜力或质量的重要因素。因此,在农业生产期间,我们可以通过作物旋转,间作或使用专用生物肥料和土壤调节剂来调节土壤 - 作物微生物生态系统的稳定性,以减轻连续种植障碍。

著录项

  • 来源
    《Environmental research》 |2021年第9期|111319.1-111319.11|共11页
  • 作者单位

    School of Minerals Processing and Bioengineering Central South University Changsha 410083 China;

    Tobacco Research Institute of Hunan Province Changsha 410004 China College of Agronomy Hunan Agricultural University Changsha 410128 China;

    Tobacco Research Institute of Hunan Province Changsha 410004 China;

    School of Minerals Processing and Bioengineering Central South University Changsha 410083 China;

    School of Minerals Processing and Bioengineering Central South University Changsha 410083 China;

    Tobacco Research Institute of Hunan Province Changsha 410004 China;

    School of Minerals Processing and Bioengineering Central South University Changsha 410083 China;

    College of Agronomy Hunan Agricultural University Changsha 410128 China;

    School of Energy Science and Engineering Central South University Changsha 410083 China;

    The Institute of Ecology Chinese Research Academy of Environmental Sciences Beijing 100012 China;

    The Institute of Ecology Chinese Research Academy of Environmental Sciences Beijing 100012 China;

    Agricultural Bureau of Dongkou County Hunan Province Shaoyang 422300 China;

    Tobacco Research Institute of Hunan Province Changsha 410004 China;

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

    Continuous cropping obstacle; Soil propertySoil bacterial; Community structure; Molecular ecology networks (MENs);

    机译:连续种植障碍;土壤菌株细菌;社区结构;分子生态网络(男士);

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