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Analysis of microbial communities in heavy metals-contaminated soils using the metagenomic approach

机译:偏见方法分析重金属污染土壤中的微生物群落

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摘要

Soil pollution occurring at mining sites has adverse impacts on soil microbial diversity. New approaches, such as metagenomics approach, have become a powerful tool to investigate biodiversity of soil microbial communities. In the current study, metagenomics approach was used to investigate the microbial diversity of soils contaminated with different concentrations of lead (Pb) and zinc (Zn). The contaminated soils were collected from a Pb and Zn mine. The soil total DNA was extracted and 16S rDNA genes were amplified using universal primers. The PCR amplicons were sequenced and bioinformatic analysis of metagenomes was conducted to identify prokaryotic diversity in the Pb- and Zn-contaminated soils. The results indicated that the ten most abundant bacteria in all samples were Solirubrobacter (Actinobacteria), Geobacter (Proteobacteria), Edaphobacter (Acidobacteria), Pseudomonas (Proteobacteria), Gemmatiomonas (Gemmatimonadetes), Nitrosomonas, Xanthobacter, and Sphingomonas (Proteobacteria), Pedobacter (Bacterioidetes), and Ktedonobacter (Chloroflexi), descendingly. Archaea were also numerous, and Nitrososphaerales which are important in the nitrogen cycle had the highest abundance in the samples. Although, alpha and beta diversity showed negative effects of Pb and Zn contamination on soil microbial communities, microbial diversity of the contaminated soils was not subjected to a significant change. This study provided valuable insights into microbial composition in heavy metals-contaminated soils.
机译:采矿遗址发生的土壤污染对土壤微生物多样性产生不利影响。新方法,如偏心神经方法,已成为调查土壤微生物社区生物多样性的强大工具。在目前的研究中,使用偏见的方法来研究不同浓度的铅(Pb)和锌(Zn)污染的土壤的微生物多样性。从PB和Zn矿区收集受污染的土壤。萃取土壤总DNA,并使用通用引物扩增16S rdNA基因。测序PCR扩增子,并进行梅毒的生物信息分析,以鉴定PB和Zn受污染的土壤中的原核多样性。结果表明,所有样品中的十个最丰富的细菌是溶胶杆菌(肌动菌),地理杆菌(植物菌),胶粉杆菌(抗酸杆菌),假单胞菌(植物菌),Gemmatiomonas(GemmatimonaDetes),硝基胺,Xanthobacter和鞘氨酰(植物)(Proteobacteria),Peobacter(菌根)和kteDoonobacter(氯结角),下降。古亚茶也很多,在氮循环中具有重要的亚硝基阳磷在样品中具有最高的丰富。虽然α和β多样性表现出Pb和Zn污染对土壤微生物群落的负面影响,但污染的土壤的微生物多样性没有受到重大变化。本研究为重金属污染土壤中的微生物组合物提供了有价值的见解。

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