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Biogenic Mineral Production by a Novel Arsenic-Metabolizing Thermophilic Bacterium from the Alvord Basin Oregon

机译:俄勒冈州阿尔沃德盆地新型砷代谢高温细菌的生物生产

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摘要

The Alvord Basin in southeast Oregon contains a variety of hydrothermal features which have never been microbiologically characterized. A sampling of Murky Pot (61°C; pH 7.1) led to the isolation of a novel arsenic-metabolizing organism (YeAs) which produces an arsenic sulfide mineral known as β-realgar, a mineral that has not previously been observed as a product of bacterial arsenic metabolism. YeAs was grown on a freshwater medium and utilized a variety of organic substrates, particularly carbohydrates and organic acids. The temperature range for growth was 37 to 75°C (optimum, 55°C), and the pH range for growth was 6.0 to 8.0 (optimum, pH 7.0 to 7.5). No growth was observed when YeAs was grown under aerobic conditions. The doubling time when the organism was grown with yeast extract and As(V) was 0.71 h. Microscopic examination revealed Gram stain-indeterminate, non-spore-forming, nonmotile, rod-shaped cells, with dimensions ranging from 0.1 to 0.2 μm wide by 3 to 10 μm long. Arsenic sulfide mineralization of cell walls and extracellular arsenic sulfide particulate deposition were observed with electron microscopy and elemental analysis. 16S rRNA gene analysis placed YeAs in the family Clostridiaceae and indicated that the organism is most closely related to the Caloramator and Thermobrachium species. The G+C content was 35%. YeAs showed no detectable respiratory arsenate reductase but did display significant detoxification arsenate reductase activity. The phylogenetic, physiological, and morphological characteristics of YeAs demonstrate that it is an anaerobic, moderately thermophilic, arsenic-reducing bacterium. This organism and its associated metabolism could have major implications in the search for innovative methods for arsenic waste management and in the search for novel biogenic mineral signatures.
机译:俄勒冈州东南部的Alvord盆地包含各种从未有过微生物学特征的热液特征。对Murky Pot(61°C; pH 7.1)进行了采样,导致分离出一种新型的砷代谢生物(YeAs),该生物产生一种称为β-雄黄的硫化砷矿物质,该矿物质以前从未发现过。细菌砷代谢。 YeAs在淡水培养基上生长,并利用了多种有机底物,尤其是碳水化合物和有机酸。生长的温度范围为37至75℃(最佳55℃),pH的生长范围为6.0至8.0(最佳pH 7.0至7.5)。在有氧条件下生长YeAs时未观察到生长。生物体与酵母提取物和As(V)一起生长时的倍增时间为0.71小时。显微镜检查显示革兰氏染色可识别,不形成孢子,不运动,杆状细胞,尺寸范围从0.1到0.2μm宽到3到10μm长。用电子显微镜和元素分析观察到细胞壁上的硫化砷矿化和细胞外硫化砷颗粒沉积。 16S rRNA基因分析将YeAs置于梭菌科中,并表明该生物与Caloramator和Thermobrachium物种最相关。 G + C含量为35%。 YeAs没有显示出可检测的呼吸砷酸还原酶,但确实显示出明显的排毒砷酸还原酶活性。 YeAs的系统发育,生理和形态特征表明,它是一种厌氧,中等嗜热,减少砷的细菌。该生物及其相关的代谢可能对寻找砷废物管理的创新方法以及寻找新的生物成因矿物特征具有重大意义。

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