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首页> 外文期刊>African Journal of Microbiology Research >Influences of light and temperature on membrane potential and respiratory viability of an aerobic anoxygenic phototrophic bacterium Erythrobacter sp. JL475
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Influences of light and temperature on membrane potential and respiratory viability of an aerobic anoxygenic phototrophic bacterium Erythrobacter sp. JL475

机译:光和温度对有氧产氧光养细菌红细菌菌膜电位和呼吸活力的影响。 JL475

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Flow cytometry’s (FCM) measurement of membrane potential (MP) and cell respiration viability based on continuous culture was used to investigate the responses of aerobic anoxygenic phototrophic bacteria (AAPB) in the heterotrophic growth and?regulation mechanism of?photosynthesis?to environmental changes. An AAPB strain?Erythrobacter sp.?JL475 and a non-AAPB strain?Erythrobacter sp.?JL316 were used as the experimental?bacteria, both of which were isolated from the?South China Sea. The results showed that light-cultured AAPB showed higher MP and biomass at 10°C, suggesting an obvious stimulation of light on AAPB growth. By contrast, dark-cultivated JL475 had higher MP and biomass at higher temperature (20, 30 and 40°C).?The rate of heterotrophic respiration at different temperature environment?ranked as follows: dark-cultivated JL316 > dark-cultivated JL475 > light/dark cycling cultivated JL475. Light undoubtedly increased the cell viability of AAPB, especially of apoptosis cells. The CTC+% at different carbon concentration ranked as follows: light/dark cycling cultivated JL475 > dark-cultivated JL316 > dark-cultivated JL475.?It was concluded that the heterotrophic respiration?would?played a key role in energy metabolism of AAPB,?photosynthesis may provide an advantage for AAPB to survive in a variety of diverse environments.
机译:基于连续培养的流式细胞仪(FCM)测量膜电位(MP)和细胞呼吸活力,以研究好氧厌氧性光养细菌(AAPB)对异养生长和“光合作用”调节机制对环境变化的响应。实验用细菌是AAPB菌株“红细菌菌” JL475和非AAPB菌株“红细菌菌” JL316,它们都是从南海分离的。结果表明,光培养的AAPB在10°C时显示出更高的MP和生物量,表明光对AAPB的生长有明显的刺激作用。相比之下,深色栽培的JL475在较高温度(20、30和40°C)下具有更高的MP和生物量。在不同温度环境下的异养呼吸速率排名如下:深色栽培的JL316>深色栽培的JL475>光/暗循环栽培的JL475。无疑,光会增加AAPB的细胞活力,尤其是凋亡细胞的活力。不同碳浓度下的CTC +%排序为:明/暗循环培养JL475>暗培养JL316>暗培养JL475。结论:异养呼吸在AAPB的能量代谢中起关键作用。光合作用可能为AAPB在各种不同环境中生存提供优势。

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