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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Influence of geogenic factors on microbial communities in metallogenic Australian soils
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Influence of geogenic factors on microbial communities in metallogenic Australian soils

机译:地质因素对澳大利亚成矿土壤中微生物群落的影响

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Links between microbial community assemblages and geogenic factors were assessed in 187 soil samples collected from four metal-rich provinces across Australia.Field-fresh soils and soils incubated with soluble Au(III) complexes were analysed using three-domain multiplex-terminal restriction fragment length polymorphism, and phylogenetic(PhyloChip) and functional(GeoChip) microarrays.Geogenic factors of soils were determined using lithological-, geomorphological-and soil-mapping combined with analyses of 51 geochemical parameters.Microbial communities differed significantly between landforms, soil horizons, lithologies and also with the occurrence of underlying Au deposits.The strongest responses to these factors, and to amendment with soluble Au(III) complexes, was observed in bacterial communities.PhyloChip analyses revealed a greater abundance and diversity of Alphaproteobacteria(especially Sphingomonas spp.), and Firmicutes(Bacillus spp.) in Au-containing and Au(III)-amended soils.Analyses of potential function(GeoChip) revealed higher abundances of metal-resistance genes in metal-rich soils.For example, genes that hybridised with metal-resistance genes copA, chrA and czcA of a prevalent aurophillic bacterium, Cupriavidus metallidurans CH34, occurred only in auriferous soils.These data help establish key links between geogenic factors and the phylogeny and function within soil microbial communities.In particular, the landform, which is a crucial factor in determining soil geochemistry, strongly affected microbial community structures.
机译:从澳大利亚四个富金属省份收集的187个土壤样品中评估了微生物群落组成与地质因素之间的联系,使用三域多重末端限制片段长度分析了田间新鲜土壤和与可溶性Au(III)配合物孵育的土壤多态性,系统发育(PhyloChip)和功能性(GeoChip)芯片。使用岩性,地貌和土壤映射技术,结合51种地球化学参数的分析,确定了土壤的成因。地貌,土壤层位,岩性和岩性之间的微生物群落差异显着在细菌群落中观察到了对这些因素的最强烈反应以及对可溶性Au(III)配合物的修饰的最强反应.PhyloChip分析显示,阿尔法变形杆菌(尤其是鞘氨醇单胞菌)的丰度和多样性更高,含金和Au(III)修饰土壤中的土壤和土壤杆菌(Bacillus spp。)潜在功能分析(GeoChip)显示,在富含金属的土壤中金属抗性基因的丰度更高,例如,与流行的嗜酸性细菌Cupriavidus metallidurans CH34的金属抗性基因copA,chrA和czcA杂交的基因仅在这些数据有助于建立地球成因与土壤微生物群落内系统发育和功能之间的关键联系,特别是决定土壤地球化学的关键因素地形对微生物群落结构的影响很大。

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