首页> 外文期刊>Environmental Science and Pollution Research >Restoration with pioneer plants changes soil properties and remodels the diversity and structure of bacterial communities in rhizosphere and bulk soil of copper mine tailings in Jiangxi Province, China
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Restoration with pioneer plants changes soil properties and remodels the diversity and structure of bacterial communities in rhizosphere and bulk soil of copper mine tailings in Jiangxi Province, China

机译:用先驱植物修复改变土壤性质,改变江西省铜矿尾矿根际和散装土壤的细菌社区的多样性和结构

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摘要

To unravel the ecological function played by pioneer plants in the practical restoration of mine tailings, it is vital to explore changes of soil characteristics and microbial communities in rhizosphere and bulk soil following the adaptation and survival of plants. In the present study, the diversity and structure of rhizospheric bacterial communities of three pioneer plants in copper mine tailings were investigated by Illumina MiSeq sequencing, and the effects of pioneer plants on soil properties were also evaluated. Significant soil improvement was detected in rhizospheric samples, and Alnus cremastogyne showed higher total organic matter, total nitrogen, and available phosphorus than two other herbaceous plants. Microbial diversity indices in rhizosphere and bulk soil of reclaimed tailings were significantly higher than bare tailings, even the soil properties of bulk soil in reclaimed tailings were not significantly different from those of bare tailings. A detailed taxonomic composition analysis demonstrated that Alphaproteobacteria and Deltaproteobacteria , Chloroflexi , Acidobacteria , and Gemmatimonadetes showed significantly higher relative abundance in rhizosphere and bulk soil. In contrast, Gammaproteobacteria and Firmicutes were abundant in bare tailings, in which Bacillus , Pseudomonas , and Lactococcus made up the majority of the bacterial community (63.04%). Many species within known heavy metal resistance and nutrient regulatory microorganism were identified in reclaimed tailings, and were more abundant among rhizospheric microbes. Hierarchical clustering and principal coordinate analysis (PCoA) analysis demonstrated that the bacterial profiles in the rhizosphere clustered strictly together according to plant types, and were distinguishable from bulk soil. However, we also identified a large shared OTUs that occurred repeatedly and was unaffected by highly diverse soil properties in rhizosphere and bulk samples. Redundancy analysis indicated that water content and Cu and As concentrations were the main environmental regulators of microbial composition. These results suggest that the interactive effect of pioneer plants and harsh soil environmental conditions remodel the specific bacterial communities in rhizosphere and bulk soil in mine tailings. And A. cremastogyne might be approximate candidate for phytoremediation of mine tailings for better soil amelioration effect and relative higher diversity of bacterial community in rhizosphere.
机译:为了解开先锋植物在矿山尾矿的实际恢复中发挥的生态功能,在植物的适应和存活之后探讨根际和散装土壤中土壤特征和微生物社区的变化至关重要。在本研究中,通过Illumina MiSeq测序研究了铜矿尾矿中三种先驱植物的脱钻植物的多样性和结构,并评估了先驱植物对土壤性质的影响。在脱钻样品中检测到显着的土壤改善,alnus cremastogyne显示出较高的总有机物,总氮和可用的磷,而不是另外两个草本植物。再生尾矿的根际和散装土壤中的微生物多样性指数显着高于裸露的尾矿,即使回收尾矿中散装土壤的土壤性质也没有显着不同于裸露尾矿。详细的分类法组成分析表明,αproteobacteria和deltaproteobacteria,氯咯,achecacteria和Gemmatimonapetes在根际和散装土壤中具有显着高度丰度。相比之下,胶曲杆菌和迫切性在裸露的尾矿中丰富,其中芽孢杆菌,假单胞菌和乳球菌组成了大多数细菌群体(63.04%)。在再生尾矿中发现了许多在已知的重金属抗性和营养调节微生物中的物种,并且在根际微生物中更丰富。分层聚类和主坐标分析(PCOA)分析证明了根际细菌谱系严格地聚集在一起根据植物类型,并且与散装土壤有区别。然而,我们还鉴定了一种屡次发生的大型共用OTU,并未受根际和散装样品中高度多样化的土壤性质的影响。冗余分析表明含水量和铜和浓度是微生物组合物的主要环境调节因子。这些结果表明,先驱植物和刺骨土壤环境条件的互动效果在矿井尾矿中改造了根际和散装土壤中的特定细菌社区。 A.Cremastogyne可能是矿井尾矿植物植物的近似候选者,以更好的土壤改善效应和根际细菌群体的相对多样性。

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  • 作者单位

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

    Jiangxi Engineering and Technology Research Center for Ecological Remediation of Heavy Metal Pollution Institute of Biology and Resources Jiangxi Academy of Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;环境科学、安全科学;
  • 关键词

    Pioneer plant; Restoration; Circumneutral mine tailings; Rhizosphere bacterial community; MiSeq sequencing;

    机译:先锋植物;恢复;圆周矿山尾矿;根际细菌群落;MISEQ测序;

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