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Increase of Salt Tolerance in Carbon-Starved Cells of Rhodopseudomonas palustris Depending on Photosynthesis or Respiration

机译:取决于光合作用或呼吸作用提高了红假单胞菌碳饥饿细胞的耐盐性

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摘要

Bacteria in natural environments are frequently exposed to nutrient starvation and survive against environmental stresses under non-growing conditions. In order to determine the energetic influence on survivability during starvation, changes in salt tolerance were investigated using the purple photosynthetic bacterium Rhodopseudomonas palustris after carbon starvation under photosynthetic conditions in comparison with anaerobic and aerobic dark conditions. Tolerance to a treatment with high concentration of salt (2.5 M NaCl for 1 h) was largely increased after starvation under anaerobically light and aerobically dark conditions. The starved cells under the conditions of photosynthesis or aerobic respiration contained high levels of cellular ATP, but starvation under the anaerobic dark conditions resulted in a decrease of cellular ATP contents. To observe the large increase of the salt tolerance, incubation of starved cells for more than 18 h under illumination was needed. These results suggest that the ATP-dependent rearrangement of cells induced salt tolerance.
机译:自然环境中的细菌经常暴露于营养饥饿状态,并在非生长条件下抵抗环境压力而生存。为了确定能量对饥饿过程中生存能力的影响,与紫色和紫色的光合细菌在光合作用条件下进行碳饥饿后,与厌氧和需氧黑暗条件下的耐盐性变化进行了研究。在缺氧光照和需氧黑暗条件下饥饿后,对高浓度盐(2.5 M NaCl进行1 h)处理的耐受性大大提高。在光合作用或有氧呼吸条件下的饥饿细胞含有高水平的细胞ATP,但在厌氧黑暗条件下的饥饿导致细胞ATP含量降低。要观察到耐盐性的大幅提高,需要将饥饿的细胞在光照下孵育18小时以上。这些结果表明细胞的ATP依赖性重排诱导了盐耐受性。

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