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Ecophysiology and geochemistry of microbial arsenic oxidation within a high arsenic, circumneutral hot spring system of the Alvord Desert

机译:阿尔沃德沙漠高砷环周温泉系统中微生物砷氧化的生态生理和地球化学

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Microbial metabolism of arsenic has gained considerable interest, due to the potential of microorganisms to drive arsenic cycling and significantly influence the geochemistry of naturally arsenic-rich or anthropogenically arsenic-polluted environments. Alvord Hot Spring in southeastern Oregon is a circumneutral hot spring with an average arsenic concentration of 4.5 mg L-1 (60 mu M). Hydrogeochemical analyses indicated significant arsenite oxidation, increased pH and decreased temperature along the stream channels flowing into Alvord Hot Spring. The dynamic range of pH and temperature over the length of three stream channels were 6.76-7.06 and 69.5-78.2 degrees C, respectively. Biofilm samples showed As(III) oxidation ex situ. 16S rRNA gene studies of sparse upstream biofilm indicated a dominance of bacteria related to Sulfurihydrogenibium, Thermus, and Thermocrinis. The lush downstream biofilm community included these same three groups but was more diverse with sequences related to uncultured OP10 bacterial phylum, uncultured Bacteroidetes, and an uncultured clade. Isolation of an arsenite oxidizer was conducted with artificial hot spring medium and yielded the isolate A03C, which is closely related to Thermus aquaticus based on 16S rRNA gene analysis. Thus, this study demonstrated the bacterial diversity along geochemical gradients of temperature, pH and As(III): As(V), and provided evidence of microbial arsenite oxidation within the Alvord Hot Spring system.
机译:由于微生物具有驱动砷循环并显着影响富含自然砷或人为污染的自然环境的地球化学的潜力,因此砷的微生物代谢已引起广泛关注。俄勒冈州东南部的阿尔沃德温泉(Alvord Hot Spring)是环周温泉,平均砷浓度为4.5 mg L-1(60μM)。水文地球化学分析表明,沿流入Alvord温泉的水流通道,亚砷酸盐发生了明显的氧化,pH升高和温度降低。在三个流道长度上,pH和温度的动态范围分别为6.76-7.06和69.5-78.2摄氏度。生物膜样品显示了As(III)的非原位氧化。稀疏上游生物膜的16S rRNA基因研究表明,与硫化氢,Thermus和Thermocrinis有关的细菌占优势。繁茂的下游生物膜群落包括这三个相同的群体,但与未培养的OP10细菌门,未培养的拟杆菌属和未培养的进化枝相关的序列更加多样化。用人工温泉介质分离砷氧化剂,得到分离物A03C,根据16S rRNA基因分析与水生栖热菌密切相关。因此,这项研究证明了沿温度,pH和As(III):As(V)的地球化学梯度的细菌多样性,并为Alvord温泉系统中微生物亚砷酸盐的氧化提供了证据。

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