首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Uncovering a Microbial Enigma: Isolation and Characterization of the Streamer-Generating Iron-Oxidizing Acidophilic Bacterium Ferrovum myxofaciens
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Uncovering a Microbial Enigma: Isolation and Characterization of the Streamer-Generating Iron-Oxidizing Acidophilic Bacterium Ferrovum myxofaciens

机译:发现微生物的谜团:流光生成铁氧化嗜酸细菌 Ferrovum myxofaciens的分离和表征

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摘要

A betaproteobacterium, shown by molecular techniques to have widespread global distribution in extremely acidic (pH 2 to 4) ferruginous mine waters and also to be a major component of “acid streamer” growths in mine-impacted water bodies, has proven to be recalcitrant to enrichment and isolation. A modified “overlay” solid medium was devised and used to isolate this bacterium from a number of mine water samples. The physiological and phylogenetic characteristics of a pure culture of an isolate from an abandoned copper mine (“Ferrovum myxofaciens” strain P3G) have been elucidated. “F. myxofaciens” is an extremely acidophilic, psychrotolerant obligate autotroph that appears to use only ferrous iron as an electron donor and oxygen as an electron acceptor. It appears to use the Calvin-Benson-Bassham pathway to fix CO2 and is diazotrophic. It also produces copious amounts of extracellular polymeric materials that cause cells to attach to each other (and to form small streamer-like growth in vitro) and to different solid surfaces. “F. myxofaciens” can catalyze the oxidative dissolution of pyrite and, like many other acidophiles, is tolerant of many (cationic) transition metals. “F. myxofaciens” and related clone sequences form a monophyletic group within the Betaproteobacteria distantly related to classified orders, with genera of the family Nitrosomonadaceae (lithoautotrophic, ammonium-oxidizing neutrophiles) as the closest relatives. On the basis of the phylogenetic and phenotypic differences of “F. myxofaciens” and other Betaproteobacteria, a new family, “Ferrovaceae,” and order, “Ferrovales,” within the class Betaproteobacteria are proposed. “F. myxofaciens” is the first extreme acidophile to be described in the class Betaproteobacteria.
机译:通过分子技术显示,β变形杆菌在极酸性(pH值为2至4)的含铁矿泉水中具有广泛的全球分布,并且是受地雷影响的水体中“酸流”生长的主要成分,已被证明对人类有害。丰富和孤立。设计了一种改良的“覆盖”固体培养基,并用于从许多矿井水样品中分离出这种细菌。阐明了来自废弃铜矿(“ Ferrovum myxofaciens”菌株P3G)分离物的纯培养物的生理和系统发育特征。 “F。 “ myxofaciens”是一种极嗜酸的,抗精神病的专性自养生物,似乎仅使用亚铁作为电子供体,而使用氧气作为电子受体。它似乎使用Calvin-Benson-Bassham途径固定CO2,并且是重氮营养的。它还会产生大量的细胞外聚合材料,这些材料会导致细胞彼此附着(并在体外形成小的流光状生长)并附着于不同的固体表面。 “F。 myxofaciens”可以催化黄铁矿的氧化溶解,并且像许多其他嗜酸剂一样,对许多(阳离子)过渡金属具有耐受性。 “F。 “ myxofaciens”和相关的克隆序列在Betaproteobacteria中形成了一个与分类顺序密切相关的单系统群,其中Nitrosomonadaceae科(嗜盐自养,铵氧化中性粒细胞)的亲缘关系最近。根据“ F.”的系统发育和表型差异。提出了“ myxofaciens”和其他Betaproteobacteria,Betaproteobacteria类中的一个新家族“ Ferrovaceae”和“ Ferrovales”订单。 “F。 “ myxofaciens”是在β-变形杆菌类中描述的第一个极端嗜酸菌。

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