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The influence of paddy soil bacterial diversity affected by heavy metals contamination of Dabaoshan Mine

机译:大巴山矿区重金属污染影响水稻土细菌多样性的影响

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We studied the paddy soil affected by acid drainage of Dabaoshan polymetallic ore in north Guangdong. Using real-time PCR and PCR-DGGE technique, we explored the influence of the soil bacterial community diversity at different degrees of heavy metals contamination of heavy metal and available content. The results showed that: the number of bacterial, paddy soil bacterial diversity, Shannon-Wiener index and evenness index were significantly changed after Cd, Zn, Pb and Cu pollution. The number of bacterial at upstream Liangqiao was significantly lower than the middle Shuilouxia and downstream Upper Dam, reduced by 3.82×107(cells/g soil) and 2.52×109(cells/g soil), respectively. The bacterial diversity, Shannon-Wiener index and evenness index represented as following: the upstream Liangqiao< middle Shuilouxia< downstream the Upper Dam. UPGMC cluster analysis showed that the paddy soil bacterial community structure was significantly affected by heavy metals contamination. Therefore, different levels of heavy metals contamination significantly changed the bacterial richness of the soil environment flora and affected the dominant bacterial, thus, changed the diversity of agricultural soil microbial community structure.
机译:我们研究了北广东北部Dabaoshan多金属矿石的酸性排水影响的水稻土。使用实时PCR和PCR-DGGE技术,我们探讨了土壤细菌群落多样性在不同程度的重金属污染重金属和可用含量的影响。结果表明:CD,Zn,Pb和Cu污染后细菌,水稻细菌细菌多样性,Shannon-Wiener指数和偶数指数的数量显着改变。梁桥上游的细菌数量明显低于中水沟和下游上游坝,减少了3.82&#x00d7; 10 7 (细胞/ g土壤)和2.52&#x00d7; 10 9 (细胞/ g土壤)。细菌多样性,香农 - 维纳指数和均匀指数所示:上游梁桥<中间水道<下游下游。 UPGMC聚类分析表明,水稻细菌群落结构受重金属污染的显着影响。因此,不同水平的重金属污染显着改变了土壤环境的细菌性植物,并影响了显性细菌,因此改变了农业土壤微生物群落结构的多样性。

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