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Changes In The Bacterial Community Of Soil From A Neutral Mine Drainage Channel

机译:中性矿山排水渠土壤细菌群落的变化

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摘要

Mine drainage is an important environmental disturbance that affects the chemical and biological components in natural resources. However, little is known about the effects of neutral mine drainage on the soil bacteria community. Here, a high-throughput 16S rDNA pyrosequencing approach was used to evaluate differences in composition, structure, and diversity of bacteria communities in samples from a neutral drainage channel, and soil next to the channel, at the Sossego copper mine in Brazil. Advanced statistical analyses were used to explore the relationships between the biological and chemical data. The results showed that the neutral mine drainage caused changes in the composition and structure of the microbial community, but not in its diversity. The Deinococcus/Thermus phylum, especially the Meiothermus genus, was in large part responsible for the differences between the communities, and was positively associated with the presence of copper and other heavy metals in the environmental samples. Other important parameters that influenced the bacterial diversity and composition were the elements potassium, sodium, nickel, and zinc, as well as pH. The findings contribute to the understanding of bacterial diversity in soils impacted by neutral mine drainage, and demonstrate that heavy metals play an important role in shaping the microbial population in mine environments. © 2014 Pereira et al.
机译:矿山排水是一种重要的环境干扰,会影响自然资源中的化学和生物成分。但是,关于中性矿山排水对土壤细菌群落的影响知之甚少。在这里,采用高通量的16S rDNA焦磷酸测序方法来评估巴西Sossego铜矿的中性排水通道和该通道附近土壤中样品的细菌群落组成,结构和多样性差异。先进的统计分析被用来探索生物学和化学数据之间的关系。结果表明,中性矿井排水导致微生物群落的组成和结构发生变化,但多样性没有变化。 Deinococcus / Thermus phylum,尤其是Meiothermus属,在很大程度上造成了群落之间的差异,并且与环境样品中铜和其他重金属的存在呈正相关。影响细菌多样性和组成的其他重要参数是钾,钠,镍和锌以及pH值。这些发现有助于理解受中性矿山排水影响的土壤中细菌的多样性,并证明重金属在塑造矿山环境中的微生物种群方面起着重要作用。 ©2014年Pereira等。

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