首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Microbiological functioning, diversity, and structure of bacterial communities in ultramafic soils from a tropical savanna
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Microbiological functioning, diversity, and structure of bacterial communities in ultramafic soils from a tropical savanna

机译:热带稀树草原超镁铁质土壤中细菌群落的微生物功能,多样性和结构

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摘要

Ultramafic soils are characterized by high levels of metals, and have been studied because of their geochemistry and its relation to their biological component. This study evaluated soil microbiological functioning (SMF), richness, diversity, and structure of bacterial communities from two ultramafic soils and from a non-ultramafic soil in the Brazilian Cerrado, a tropical savanna. SMF was represented according to simultaneous analysis of microbial biomass C (MBC) and activities of the enzymes beta-glucosidase, acid phosphomonoesterase and arylsulfatase, linked to the C, P and S cycles. Bacterial community diversity and structure were studied by sequencing of 16S rRNA gene clone libraries. MBC and enzyme activities were not affected by high Ni contents. Changes in SMF were more related to the organic matter content of soils (SOM) than to their available Ni. Phylogeny-based methods detected qualitative and quantitative differences in pairwise comparisons of bacterial community structures of the three sites. However, no correlations between community structure differences and SOM or SMF were detected. We believe this work presents benchmark information on SMF, diversity, and structure of bacterial communities for a unique type of environment within the Cerrado biome.
机译:超镁铁质土壤的特征是金属含量高,并且由于其地球化学及其与生物成分的关系而进行了研究。这项研究评估了来自热带热带稀树草原巴西Cerrado的两种超镁铁质土壤和非超镁铁质土壤的土壤微生物功能(SMF),丰富度,多样性和细菌群落结构。根据同时分析微生物生物量C(MBC)和与C,P和S循环相关的β-葡萄糖苷酶,酸性磷酸单酯酶和芳基硫酸酯酶的活性来表示SMF。通过对16S rRNA基因克隆文库的测序研究了细菌群落的多样性和结构。高Ni含量不影响MBC和酶活性。 SMF的变化与土壤有机质含量(SOM)的关系更大,而不是与土壤中可用的Ni有关。基于系统发育的方法在三个位置的细菌群落结构的成对比较中检测到质和量的差异。但是,没有检测到群落结构差异与SOM或SMF之间的相关性。我们相信这项工作可以提供有关塞拉多生物群落内独特类型环境的SMF,多样性和细菌群落结构的基准信息。

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