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A commensal symbiotic interrelationship for the growth of Symbiobacterium toebii with its partner bacterium, Geobacillus toebii

机译:一种共生的共生关系,用于Toebii共生细菌与其伴侣细菌Geobacillus toebii的生长

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Background Symbiobacterium toebii is a commensal symbiotic thermophile that absolutely requires its partner bacterium Geobacillus toebii for growth. Despite development of an independent cultivation method using cell-free extracts, the growth of Symbiobacterium remains unknown due to our poor understanding of the symbiotic relationship with its partner bacterium. Here, we investigated the interrelationship between these two bacteria for growth of S. toebii using different cell-free extracts of G. toebii . Results Symbiobacterium toebii growth-supporting factors were constitutively produced through almost all growth phases and under different oxygen tensions in G. toebii , indicating that the factor may be essential components for growth of G. toebii as well as S. toebii . The growing conditions of G. toebii under different oxygen tension dramatically affected to the initial growth of S. toebii and the retarded lag phase was completely shortened by reducing agent, L-cysteine indicating an evidence of commensal interaction of microaerobic and anaerobic bacterium S. toebii with a facultative aerobic bacterium G. toebii . In addition, the growth curve of S. toebii showed a dependency on the protein concentration of cell-free extracts of G. toebii , demonstrating that the G. toebii -derived factors have nutrient-like characters but not quorum-sensing characters. Conclusions Not only the consistent existence of the factor in G. toebii during all growth stages and under different oxygen tensions but also the concentration dependency of the factor for proliferation and optimal growth of S. toebii , suggests that an important biosynthetic machinery lacks in S. toebii during evolution. The commensal symbiotic bacterium, S. toebii uptakes certain ubiquitous and essential compound for its growth from environment or neighboring bacteria that shares the equivalent compounds. Moreover, G. toebii grown under aerobic condition shortened the lag phase of S. toebii under anaerobic and microaerobic conditions, suggests a possible commensal interaction that G. toebii scavengers ROS/RNS species and helps the initial growth of S. toebii .
机译:背景Toebii共生菌是一种共生共生嗜热菌,它绝对需要其伙伴细菌Toebii Geoebillus toebii才能生长。尽管开发了一种使用无细胞提取物的独立培养方法,但由于我们对与其伴侣细菌之间的共生关系了解不足,因此共生细菌的生长仍然未知。在这里,我们调查了两种细菌之间的相互关系,以使用不同的无毒G. toebii提取物来培养S. toebii。结果假单胞菌的生长支持因子在几乎所有的生长期和不同的氧气压力下均组成性地产生,表明该因子可能是假单胞菌和假单胞菌生长的重要组成部分。在不同的氧气压力下,假单胞菌的生长条件极大地影响了假单胞菌的初始生长,并且通过还原剂L-半胱氨酸完全缩短了延迟的迟滞期,这表明微需氧菌和厌氧菌共生相互作用的证据。与兼性好氧细菌齿霉。此外,弓形虫的生长曲线显示出对弓形虫无细胞提取物的蛋白质浓度的依赖性,这表明钩形杆菌的衍生因子具有类似营养的特征,但没有群体感应特征。结论不仅在整个生长阶段,且在不同的氧气压力下弓形杆菌中因子的一致性存在,而且因子的浓度依赖性促进了弓形杆菌的增殖和最佳生长,这表明弓形杆菌缺乏重要的生物合成机制。在进化过程中。共生共生细菌S. toebii吸收某些普遍存在且必不可少的化合物,以使其从环境或共享相同化合物的邻近细菌中生长。此外,在有氧条件下生长的G. toebii缩短了厌氧和微需氧条件下S. toebii的迟滞期,表明G. toebii清除ROS / RNS物种并有助于S. toebii的初始生长可能是共生相互作用。

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