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The Effects of Different Carbon Sources on the Growth of &i&Rhodobacter sphaeroides&/i&

机译:不同碳源对& I&gt的生长的影响。乳丝菌& / i&

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Rhodobacter sphaeroides is a purple non-sulfur bacterium that belongs to the α -3 subdivision of Proteobacteria. R. sphaeroides is a model bacterial species because of its complex genome structure and expanded metabolic capabilities. The genome of R. sphaeroides consists of two circular chromosomes and five endogenous plasmids. It has the ability to grow under a wide variety of environmental conditions. It grows aerobically (~20% O_(2)), semi-aerobically (~2% O_(2)), and photosynthetically (under anaerobic condition plus light). It has been previously shown that many bacterial species utilize a number of alternate carbon sources for their optimal growth under a variety of growth conditions. We hypothesize that different or an additional carbon source in the minimal medium differentially affects the bacterial growth under dark-aerobic conditions. The bacterial growth kinetics and the number of cells in the bacterial culture were analyzed by measuring the optical density (OD at 600 nm) and the colony forming units (CFUs) at regular intervals of bacterial cultures. Results reveal that sodium succinate is the preferred sole carbon source for the optimal growth of R. sphaeroides . The results of growth kinetics and CFUs together concluded that from the tested carbon sources, sodium succinate is the best single carbon source in the minimal media for the optimal growth of R. sphaeroides . Interestingly, cell culture grown in SIS supplemented with sodium acetate exhibits a prolonged lag phase with the lowest ODs and CFUs that later switches to the growth-burst phase support previously discovered similar phenomenon of the growth-rate switch in the presence of acetate metabolism. Future work will utilize the aerobically grown R. sphaeroides’ cells as a biocatalyst to deplete the oxygen levels from natural gas streams and industrial gas pipelines.
机译:乳杆菌是一种紫色的非硫磺细菌,属于植物的α-3细胞。 R. Sphaeroides是一种模型细菌物种,因为其复杂的基因组结构和扩展的代谢能力。 r的基因组。 Sphaeroides由两个圆形染色体和五种内源性质粒组成。它有能力在各种环境条件下生长。它在氧气上(〜20%O_(2)),半氧化(〜2%O_(2)),和光合作用(在厌氧条件加光下)。先前已经表明,许多细菌种类利用了许多交替碳源,以在各种生长条件下的最佳增长。我们假设最小培养基中的不同或额外的碳源差异地影响暗毒性条件下的细菌生长。通过定期细菌培养物定期测量光学密度(600nm处)和菌落形成单元(CFU),分析细菌生长动力学和细菌培养中的细胞数。结果表明,琥珀酸钠是最优选的唯一碳源,用于最佳的 r。 sphaeroides。生长动力学和CFU的结果结合在一起,从测试的碳源,琥珀酸钠是最小培养基中最好的单碳源,用于最佳的 r。 sphaeroides。有趣的是,在补充有醋酸钠的SIS中生长的细胞培养表现出延长的滞后阶段,其ODS和CFU具有最低的ODS和CFU,其后来切换到生长突发相支持的先前发现在乙酸盐代谢存在下生长速率开关的类似现象。未来的工作将利用易于生长的 r。 Sphaeroides的细胞作为生物催化剂,从天然气流和工业气体管道耗尽氧气水平。

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