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Reservoir water stratification and mixing affects microbial community structure and functional community composition in a stratified drinking reservoir

机译:水库水分层和混合影响分层饮用水库中的微生物群落结构和功能性群落组成

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摘要

To investigate how the aquatic bacterial community of a stratified reservoir drives the evolution of water parameters, the microbial community structure and network characteristics of bacteria in a stratified reservoir were investigated using Illumina MiSeq sequencing technology. A total of 42 phyla and 689 distinct genera were identified, which showed significant seasonal variation. Additionally, stratified variations in the bacterial community strongly reflected the vertical gradient and seasonal changes in water temperature, dissolved oxygen, and nutrition concentration. Furthermore, principal coordinate analysis indicated that most microorganisms were likely influenced by changes in water stratification conditions, exhibiting significant differences during the stratification period and mixing period based on Adonis, MRPP, and Anosim. Compared to the stratification period, 123 enhanced operational taxonomic units (OTUs; 29%) and 226 depleted OTUs (52%) were identified during the mixing period. Linear discriminant analysis effect size results showed that 15 major genera were enriched in the mixing period and 10 major genera were enriched in the stratification period. Importantly, network analysis revealed that the keystone species belonged to hgcl_clade, CL500-29, Acidibacter, Paucimonas, Flavobacterium, Prochlorothrix, Xanthomonadales, Chloroflexia, Burkholderiales, OPB56, KI89A_clade, Synecho-coccus, Caulobacter or were unclassified. Redundancy analysis showed that temperature, dissolved oxygen, pH, chlorophyll-α, total phosphorus, nitrate, and ammonia were important factors influencing the water bacterial community and function composition, which were consistent with the results of the Mantel test analysis. Furthermore, random forest analysis showed that temperature, dissolved oxygen, ammonia, and total dissolved phosphorous were the most important variables predicting water bacterial community and function community α- and β-diversity (P < 0.05). Overall, these results provide insight into the interactions between the microbial community and water quality evolution mechanism in Zhoucun reservoir.
机译:为了研究分层储层的水生细菌群体如何推动水参数的演变,使用Illumina Miseq测序技术研究了分层储层中细菌的微生物群落结构和网络特征。鉴定了总共42个phyla和689个不同的属,这表明了显着的季节变化。另外,细菌群落的分层变化强烈反映了水温,溶解氧和营养浓度的垂直梯度和季节性变化。此外,主坐标分析表明,大多数微生物可能受水分层条件的变化的影响,在分层期和基于阿多尼斯,MRPP和Anosim的混合期间表现出显着差异。与分层期相比,在混合期间,鉴定了123个增强的操作分类单位(OTUS; 29%)和226个耗尽的OTU(52%)。线性判别分析效果尺寸结果表明,在混合期内富集15个主要属,并在分层期中富集10个主要属。重要的是,网络分析表明,梯形物种属于HgCl_Clade,Cl500-29,嗜酸剂,幼尾酸,磷酸酯,普罗酚,番茄大等,杨木植物,Burkholderiales,OPB56,Ki89a_clade,SyneCho-Coccus,Cailobacter或未分类。冗余分析表明,温度,溶解的氧气,pH,叶绿素-α,总磷,硝酸盐和氨是影响水菌群落和功能组合物的重要因素,这与Mantel试验分析的结果一致。此外,随机森林分析表明,温度,溶解的氧,氨和总溶解磷是预测水菌群落和功能群落α-和β-多样性的最重要的变量(P <0.05)。总体而言,这些结果提供了对周道水库中微生物群落和水质演化机制之间的相互作用的洞察。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|110456.1-110456.14|共14页
  • 作者单位

    Pollution Prevention Biotechnology Laboratory of Hebei Province School of Environmental Science and Engineering Hebei University of Science and Technology Shijiazhuang 050018 PR China Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xi'an 710055 PR China;

    Pollution Prevention Biotechnology Laboratory of Hebei Province School of Environmental Science and Engineering Hebei University of Science and Technology Shijiazhuang 050018 PR China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xi'an 710055 PR China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xi'an 710055 PR China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xi'an 710055 PR China Northwest Engineering Corporation Limited the Power Construction Corporation of China PR China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xi'an 710055 PR China School of Energy and Environment Zhongyuan University of Technology Zhengzhou 450007 PR China;

    Key Laboratory of Northwest Water Resource Environment and Ecology MOE Xi'an University of Architecture and Technology Xi'an 710055 PR China School of Energy and Environment Zhongyuan University of Technology Zhengzhou 450007 PR China;

    Pollution Prevention Biotechnology Laboratory of Hebei Province School of Environmental Science and Engineering Hebei University of Science and Technology Shijiazhuang 050018 PR China;

    Pollution Prevention Biotechnology Laboratory of Hebei Province School of Environmental Science and Engineering Hebei University of Science and Technology Shijiazhuang 050018 PR China;

    Pollution Prevention Biotechnology Laboratory of Hebei Province School of Environmental Science and Engineering Hebei University of Science and Technology Shijiazhuang 050018 PR 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

    High-throughput sequencing; Microbial community; Network analysis; Random forest analysis; Kyoto encyclopedia of genes and genomes; Water reservoir;

    机译:高通量测序;微生物群落;网络分析;随机森林分析;基因和基因组的京都百科全书;水库;

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