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首页> 外文期刊>The Science of the Total Environment >The effects of phytoremediation on soil bacterial communities in an abandoned mine site of rare earth elements
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The effects of phytoremediation on soil bacterial communities in an abandoned mine site of rare earth elements

机译:植物修复对废弃稀土元素矿山土壤细菌群落的影响

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Overexploitation of rare earth elements (REEs) has caused serious desertification and environmental pollution. The ecological restoration of mining areas has attracted increasing attention in China. Soil microbiota is important for successful ecological remediation of abandoned mine land. In this study, soil samples were collected from a restored REE mine site, and the bacterial community composition and diversity were assessed by Illumina high-throughput sequencing targeting the V3-V4 region of the 16S rRNA gene. Microbiota significantly developed in the remediated land. A total of 663,781 effective 16S rRNA gene sequences were obtained, which were classified into 28 bacterial phyla and 3 archaeal phyla. The dominant phyla across all samples (5% of total effective sequences) were Proteobacteria, Acidobacteria and Firmicutes. Bacterial diversity indices (OTU number, Shannon index and Chaol index) of the restored soils were higher than those of the tailings and even surpassed those in the unmined site. Redundancy analysis indicated that soil nutrients (soil organic carbon, available phosphorus and total nitrogen) were the dominant factors, followed by soil pH, affecting bacterial community structure. In general, these results suggested that soil amendment and phytoremediation effectively improved the soil environment of the abandoned mine site, which also increased our understanding of the correlation between microbial variation and soil properties in restored REE mine soils. (C) 2019 Elsevier B.V. All rights reserved.
机译:稀土元素(REEs)的过度开采已导致严重的荒漠化和环境污染。矿区的生态恢复在中国引起了越来越多的关注。土壤微生物群对于成功的废弃矿区生态修复非常重要。在这项研究中,从恢复的REE矿场采集土壤样品,并通过针对16S rRNA基因V3-V4区域的Illumina高通量测序评估了细菌群落组成和多样性。在经过修复的土地上微生物群落显着发展。总共获得了663781个有效的16S rRNA基因序列,分为28个细菌门和3个古细菌门。在所有样品中(超过总有效序列的5%),优势菌是变形杆菌,酸性细菌和Firmicutes。恢复土壤的细菌多样性指数(OTU数,香农指数和Chaol指数)高于尾矿,甚至超过未开采地。冗余分析表明,土壤养分(土壤有机碳,有效磷和总氮)是主要因素,其次是土壤pH值,影响细菌群落结构。总的来说,这些结果表明土壤改良和植物修复有效地改善了废弃矿区的土壤环境,也使我们对恢复的REE矿土壤中微生物变化与土壤特性之间的相关性有了更深入的了解。 (C)2019 Elsevier B.V.保留所有权利。

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