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Mycobacteria Isolated from Angkor Monument Sandstones Grow Chemolithoautotrophically by Oxidizing Elemental Sulfur

机译:从吴哥纪念碑砂岩中分离出来的分枝杆菌通过氧化元素硫在化学上自养生长。

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摘要

To characterize sulfate-producing microorganisms from the deteriorated sandstones of Angkor monuments in Cambodia, strains of Mycobacterium spp. were isolated from most probable number-positive cultures. All five strains isolated were able to use both elemental sulfur (S0) for chemolithoautotrophic growth and organic substances for chemoorganoheterotrophic growth. Results of phylogenetic and phenotypic analyses indicated that all five isolates were rapid growers of the genus Mycobacterium and were most similar to Mycobacterium cosmeticum and Mycobacterium pallens. Chemolithoautotrophic growth was further examined in the representative strain THI503. When grown in mineral salts medium, strain THI503 oxidized S0 to thiosulfate and sulfate; oxidation was accompanied by a decrease in the pH of the medium from 4.7 to 3.6. The link between sulfur oxidation and energy metabolism was confirmed by an increase in ATP. Fluorescence microscopy of DAPI-stained cells revealed that strain THI503 adheres to and proliferates on the surface of sulfur particles. The flexible metabolic ability of facultative chemolithoautotrophs enables their survival in nutrient-limited sandstone environments.
机译:为了鉴定柬埔寨吴哥古迹的退化砂岩中产生硫酸盐的微生物,使用分枝杆菌属的菌株。从最可能的数阳性文化中分离出来。分离出的所有五种菌株均能够使用元素硫(S 0 )进行化学自养营养生长,并使用有机物质进行化学异养营养生长。系统发育和表型分析的结果表明,所有五个分离株都是分枝杆菌属的快速生长者,并且与化妆品分枝杆菌和浅色分枝杆菌最相似。在代表性菌株THI503中进一步检查化石自养菌的生长。在矿物盐培养基中生长时,菌株THI503将S 0 氧化为硫代硫酸盐和硫酸盐;氧化伴随着介质的pH值从4.7降低到3.6。 ATP的增加证实了硫的氧化与能量代谢之间的联系。 DAPI染色细胞的荧光显微镜显示,菌株THI503粘附并扩散在硫颗粒的表面。兼性化石自养生物的柔性代谢能力使其能够在营养有限的砂岩环境中生存。

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