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铜污染对土壤细菌群落结构及重金属抗性基因的影响
引用本文:李大乐,陈建文,张红,李君剑. 铜污染对土壤细菌群落结构及重金属抗性基因的影响[J]. 环境科学学报, 2021, 41(3): 1082-1090
作者姓名:李大乐  陈建文  张红  李君剑
作者单位:山西大学黄土高原研究所,太原030006
基金项目:山西省重点研发计划(No.201903D321071);国家自然科学基金(No.41771548)
摘    要:重金属Cu在土壤中长期积累会对微生物产生毒害作用,为了探究Cu污染对土壤细菌群落及重金属抗性基因的影响,本研究建立了不同Cu浓度(50、100、200、300、500、750和1000 mg·kg-1)的土壤微宇宙,基于高通量测序和荧光定量PCR技术分析比较不同Cu浓度下培养14d后土壤细菌群落及重金属抗性基因的变化....

关 键 词:Cu污染  细菌群落结构  重金属抗性基因  微宇宙
收稿时间:2020-07-19
修稿时间:2020-08-25

Effects of copper pollution on soil bacterial community structure and heavy-metal resistance genes
LI Dale,CHEN Jianwen,ZHANG Hong,LI Junjian. Effects of copper pollution on soil bacterial community structure and heavy-metal resistance genes[J]. Acta Scientiae Circumstantiae, 2021, 41(3): 1082-1090
Authors:LI Dale  CHEN Jianwen  ZHANG Hong  LI Junjian
Affiliation:Institute of Loess Plateau, Shanxi University, Taiyuan 030006
Abstract:The accumulation of copper in soil impose toxic effects on microorganisms. However, there were still poor understandings of the structure and heavy metal resistance genes of soil bacterial communities under different soil Cu contents. In this study, soil microcosms were established under different Cu concentrations (50, 100, 200, 300, 500, 750, and 1000 mg·kg-1).The high-throughput sequencing and fluorescence quantitative PCR were employed to detect the changes of soil bacterial community and resistance genes with the increase of Cu concentration after 14-d cultivation. Our results showed that soils bacterial abundance and diversity were increased when Cu concentration was lower than 100 mg·kg-1 (p<0.05). However, the abundance and diversity of soil bacteria were decreased with Cu concentration higher than 500 mg·kg-1 (p<0.05). The relative abundance of Proteobacteria increased with the increase of Cu concentration, whereas the relative abundance of Acidobacteria and Bacillus decreased. Thirteen genera, such as Lysobacterium, Flavobacterium and Brevundimonas, were enriched at the genus level. The relative abundance of 17 genera including Bacillus, Pseudomonas and Subgroup_6 was reduced. The abundance of heavy metal resistance genes significantly increased with Cu concentration higher than 500 mg·kg-1 (p<0.05). CopB, copA and czcA was most abundant among the heavy metal resistance genes in such soil copper conditions. There were significant positive correlations between copB, czcA and Cu concentration (p<0.001), while copA showed a significant negative correlation with Cu concentration (p<0.001). Further, co-occurrence network analysis indicated that the changes in the abundance of resistance genes might be due to the effect of Cu contamination on its potential hosts. The results suggested that the selection of soil bacterial heavy metal resistance would affect the diversity of soil bacterial community under different Cu pollution levels, and provided a theoretical basis for the remediation of Cu contaminate.
Keywords:copper pollution  bacterial community structure  heavy metal resistance gene  soil microcosm
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