Falagán Carmen, Johnson D Barrie
School of Biological Sciences, College of Natural Sciences, Bangor University, Bangor LL57 2UW, UK.
Int J Syst Evol Microbiol. 2016 Jan;66(1):206-211. doi: 10.1099/ijsem.0.000698. Epub 2015 Oct 22.
The genus Acidithiobacillus includes three species that conserve energy from the oxidation of ferrous iron, as well as reduced sulfur, to support their growth. Previous work, based on multi-locus sequence analysis, identified a fourth group of iron- and sulfur-oxidizing acidithiobacilli as a potential distinct species. Eleven strains of 'Group IV' acidithiobacilli, isolated from different global locations, have been studied. These were all shown to be obligate chemolithotrophs, growing aerobically by coupling the oxidation of ferrous iron or reduced sulfur (but not hydrogen) to molecular oxygen, or anaerobically by the oxidation of reduced sulfur coupled to ferric iron reduction. All strains were mesophilic, although some were also psychrotolerant. Strain variation was also noted in terms of tolerance to extremely low pH and to elevated concentrations of transition metals. One strain was noted to display far greater tolerance to chloride than reported for other iron-oxidizing acidithiobacilli. All of the strains were able to catalyse the oxidative dissolution of pyrite and, on the basis of some of the combined traits of some of the strains examined, it is proposed that these may have niche roles in commercial mineral bioprocessing operations, such as for low temperature bioleaching of polysulfide ores in brackish waters. The name Acidithiobacillus ferriphilus sp. nov. is proposed to accommodate the strains described, with the type strain being M20T ( = DSM 100412T = JCM 30830T).
嗜酸氧化硫杆菌属包括三个能通过氧化亚铁以及还原态硫来获取能量以支持其生长的物种。此前基于多位点序列分析的研究,确定了第四组铁氧化和硫氧化嗜酸氧化硫杆菌为一个潜在的独特物种。已对从全球不同地点分离出的11株“第四组”嗜酸氧化硫杆菌进行了研究。结果表明,这些菌株均为专性化能无机营养菌,在有氧条件下,通过将亚铁或还原态硫(而非氢气)的氧化与分子氧的还原相偶联来生长;在无氧条件下,则通过还原态硫的氧化与铁离子的还原相偶联来生长。所有菌株均为嗜温菌,不过有些菌株也具有耐低温能力。在对极低pH值和高浓度过渡金属的耐受性方面也发现了菌株差异。有一株菌株对氯化物的耐受性远高于其他铁氧化嗜酸氧化硫杆菌。所有菌株都能够催化黄铁矿的氧化溶解,基于所检测的一些菌株的综合特性,推测这些菌株可能在商业矿物生物处理操作中具有特定作用,例如在微咸水中对多硫化物矿石进行低温生物浸出。提议将所描述的菌株命名为嗜酸嗜铁硫杆菌新种(Acidithiobacillus ferriphilus sp. nov.),模式菌株为M20T(= DSM 100412T = JCM 30830T)。