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Symbiotic Growth of a Thermophilic Sulfide-Oxidizing Photoautotroph and an Elemental Sulfur-Disproportionating Chemolithoautotroph and Cooperative Dissimilatory Oxidation of Sulfide to Sulfate

机译:嗜热硫化物自氧化的自养生物和元素硫歧化的化学自养生物的共生生长和硫化物协同异化氧化为硫酸盐。

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摘要

A thermophilic filamentous anoxygenic photosynthetic bacterium, Chloroflexus aggregans, is widely distributed in neutral to slightly alkaline hot springs. Sulfide has been suggested as an electron donor for autotrophic growth in microbial mats dominated with C. aggregans, but remarkable photoautotrophic growth of isolated C. aggregans has not been observed with sulfide as the sole electron source. From the idea that sulfide is oxidized to elemental sulfur by C. aggregans and the accumulation of elemental sulfur may have an inhibitory effect for the growth, the effects of an elemental sulfur-disproportionating bacterium that consumes elemental sulfur was examined on the autotrophic growth of C. aggregans, strain NA9-6, isolated from Nakabusa hot spring. A sulfur-disproportionating bacterium, Caldimicrobium thiodismutans strain TF1, also isolated from Nakabusa hot spring was co-cultured with C. aggregans. C. aggregans and C. thiodismutans were successfully co-cultured in a medium containing thiosulfate as the sole electron source and bicarbonate as the sole carbon source. Quantitative conversion of thiosulfate to sulfate and a small transient accumulation of sulfide was observed in the co-culture. Then the electron source of the established co-culture was changed from thiosulfate to sulfide, and the growth of C. aggregans and C. thiodismutans was successfully observed with sulfide as the sole electron donor for the autotrophic growth of the co-culture. During the cultivation in the light, simultaneous consumption and accumulation of sulfide and sulfate, respectively, were observed, accompanied with the increase of cellular DNAs of both species. C. thiodismutans likely works as an elemental sulfur scavenger for C. aggregans, and C. aggregans seems to work as a sulfide scavenger for C. thiodismutans. These results suggest that C. aggregans grows autotrophically with sulfide as the electron donor in the co-culture with C. thiodismutans, and the consumption of elemental sulfur by C. thiodismutans enabled the continuous growth of the C. aggregans in the symbiotic system. This study shows a novel symbiotic relationship between a sulfide-oxidizing photoautotroph and an elemental sulfur-disproportionating chemolithoautotroph via cooperative dissimilatory sulfide oxidation to sulfate.
机译:嗜热丝状产氧光合细菌,绿藻挠性弯曲杆菌,广泛分布于中性至弱碱性温泉中。有人建议将硫化物用作在以团聚梭菌为主导的微生物垫中自养生长的电子供体,但是在硫化物作为唯一电子源的情况下,未观察到分离出的团聚藻的显着的自养生长。从这种想法出发,即硫化物被豆荚形衣藻(C. aggregans)氧化为元素硫,并且元素硫的积累可能对生长有抑制作用,因此,研究了消耗元素硫的元素硫歧化细菌对C的自养生长的影响。从中部温泉中分离出的.agregans,菌株NA9-6。将同样从中a温泉中分离出的硫歧化细菌,Caldimicrobium thiodismutans菌株TF1与C. aggregans共培养。 C.agregans和C.thiodismutans在含有硫代硫酸盐作为唯一电子源和碳酸氢盐作为唯一碳源的培养基中成功地共培养。在共培养物中观察到硫代硫酸盐向硫酸盐的定量转化和少量的硫化物瞬时积累。然后,建立的共培养物的电子源从硫代硫酸盐变为硫化物,成功地观察到了C.agregans和C.thiodismutans的生长,其中硫化物是共培养物自养生长的唯一电子供体。在光照下培养期间,分别观察到硫化物和硫酸盐同时消耗和积累,同时两种物种的细胞DNA均增加。 C. thiodismutans可能充当C. aggregans的元素硫清除剂,而C. aggregans似乎充当C. thiodismutans的硫化物清除剂。这些结果表明,在与硫代双歧杆菌共培养中,C.agregans自养生长,其中硫化物作为电子供体,并且 C消耗了元素硫。 thiodismutans 使 C持续生长。共生系统中的聚集蛋白聚糖。这项研究表明硫化物氧化的光自养生物与元素硫歧化的化石自养生物之间的新型共生关系是通过协同异化硫化物氧化为硫酸盐而实现的。

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