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Microbial community potentially responsible for acid and metal release from an Ostrobothnian acid sulfate soil

机译:微生物群落可能导致从Ostrobothnian硫酸盐土壤中释放出酸和金属

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摘要

Soils containing an approximately equal mixture of metastable iron sulfides and pyrite occur in the boreal Ostrobothnian coastal region of Finland, termed 'potential acid sulfate soil materials'. If the iron sulfides are exposed to air, oxidation reactions result in acid and metal release to the environment that can cause severe damage. Despite that acidophilic microorganisms catalyze acid and metal release from sulfide minerals, the microbiology of acid sulfate soil (ASS) materials has been neglected. The molecular phylogeny of a depth profile through the plough and oxidized ASS layers identified several known acidophilic microorganisms and environmental clones previously identified from acid- and metal-contaminated environments. In addition, several of the 16S rRNA gene sequences were more similar to sequences previously identified from cold environments. Leaching of the metastable iron sulfides and pyrite with an ASS microbial enrichment culture incubated at low pH accelerated metal release, suggesting microorganisms capable of catalyzing metal sulfide oxidation were present. The 16S rRNA gene analysis showed the presence of species similar to Acidocella sp. and other clones identified from acid mine environments. These data support that acid and metal release from ASSs was catalyzed by indigenous microorganisms adapted to low pH.
机译:在芬兰的北部Ostrobothnian沿海地区,存在着含有几乎相等的亚稳态硫化铁和黄铁矿混合物的土壤,被称为“潜在的酸性硫酸盐土壤物质”。如果硫化铁暴露在空气中,氧化反应会导致酸和金属释放到环境中,从而可能造成严重破坏。尽管嗜酸性微生物催化硫化物矿物释放出的酸和金属,但酸性硫酸盐土壤(ASS)材料的微生物学已被忽略。通过犁和氧化的ASS层的深度剖面的分子系统发育特征,鉴定了几种已知的嗜酸微生物和先前从酸和金属污染的环境中鉴定出的环境克隆。此外,一些16S rRNA基因序列与先前从寒冷环境中鉴定出的序列更相似。在低pH下孵育的ASS微生物富集培养物对亚稳态硫化铁和黄铁矿的浸提促进了金属的释放,表明存在能够催化金属硫化物氧化的微生物。 16S rRNA基因分析表明存在与嗜酸菌类似的物种。以及从酸性矿山环境中鉴定出的其他克隆。这些数据支持从ASS释放酸和金属是由适应低pH值的本地微生物催化的。

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