热厌氧细菌嗜铁菌,一种新型的异化铁(III)还原,厌氧,嗜热细菌。

A I Slobodkin, T P Tourova, B B Kuznetsov, N A Kostrikina, N A Chernyh, E A Bonch-Osmolovskaya
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引用次数: 118

摘要

从堪察加半岛Karymsky火山喷发区新形成的热液喷口沉积物中分离出一种嗜热、厌氧、产孢子、异同化的Fe(III)还原细菌SR4T菌株。菌株SR4T细胞呈直线型、弯曲状、含氮棒状,直径0.4 ~ 0.6 μ m,长3.5 ~ 9.0 μ m,具有轻微的翻滚运动。菌株SR4T在终末膨大的孢子囊内形成圆形、可折射、耐热的内生孢子。生长温度范围为39 ~ 78℃,最适温度为69 ~ 71℃;pH范围为4.8 ~ 8.2,最适pH为6.3 ~ 6.5。菌株SR4T以蛋白胨为碳源进行厌氧生长。介质中存在的非晶氧化铁刺激了应变SR4T的生长;细胞数量随着Fe(II)的积累而增加。在Fe(III)存在下,菌株SR4T在H2/CO2上生长并利用分子氢。菌株SR4T还原9,10-蒽醌-2,6-二磺酸、亚硫酸盐、硫代硫酸盐、单质硫和MnO2。菌株SR4T不能还原硝酸盐和硫酸盐,不能在O2环境下生长。葡萄糖发酵产物为乙醇、乳酸、H2和CO2。DNA中G + C含量为32 mol%。16S rDNA序列分析表明该菌属热厌氧菌。根据生理特性和系统发育分析,建议将SR4T (= DSM 12299T)归入热厌氧菌siderophilus sp. nov新种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermoanaerobacter siderophilus sp. nov., a novel dissimilatory Fe(III)-reducing, anaerobic, thermophilic bacterium.

A thermophilic, anaerobic, spore-forming, dissimilatory Fe(III)-reducing bacterium, designated strain SR4T, was isolated from sediment of newly formed hydrothermal vents in the area of the eruption of Karymsky volcano on the Kamchatka peninsula. Cells of strain SR4T were straight-to-curved, peritrichous rods, 0.4-0.6 micron in diameter and 3.5-9.0 microns in length, and exhibited a slight tumbling motility. Strain SR4T formed round, refractile, heat-resistant endospores in terminally swollen sporangia. The temperature range for growth was 39-78 degrees C, with an optimum at 69-71 degrees C. The pH range for growth was 4.8-8.2, with an optimum at 6.3-6.5. Strain SR4T grew anaerobically with peptone as carbon source. Amorphous iron(III) oxide present in the medium stimulated the growth of strain SR4T; cell numbers increased with the concomitant accumulation of Fe(II). In the presence of Fe(III), strain SR4T grew on H2/CO2 and utilized molecular hydrogen. Strain SR4T reduced 9,10-anthraquinone-2,6-disulfonic acid, sulfite, thiosulfate, elemental sulfur and MnO2. Strain SR4T did not reduce nitrate or sulfate and was not capable of growth with O2. The fermentation products from glucose were ethanol, lactate, H2 and CO2. The G + C content of DNA was 32 mol%. 16S rDNA sequence analysis placed the organism in the genus Thermoanaerobacter. On the basis of physiological properties and phylogenetic analysis, it is proposed that strain SR4T (= DSM 12299T) should be assigned to a new species, Thermoanaerobacter siderophilus sp. nov.

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