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Role of proton motive force in phototactic and aerotactic responses of Rhodopseudomonas sphaeroides.

机译:质子动力在球形球形红假单胞菌的光战术和气顺反应中的作用。

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摘要

Rhodopseudomonas sphaeroides grown under nonrigorous anaerobic conditions in the light developed components of a branched respiratory electron transfer chain, and a photosynthetic electron transfer chain. Both respiratory pathways were sensitive to rotenone and high concentrations of cyanide, but oxygen uptake was only partially inhibited by the addition of low concentrations of cyanide or antimycin A. When incubated anaerobically in the dark, R. sphaeroides responded positively to an oxygen gradient in the absence of rotenone. In the presence of rotenone, aerotaxis only occurred when the antimycin A-sensitive branch of the pathway was functioning, although both branches still reduced oxygen. Although there was electron movement along the respiratory chain, aerotaxis only occurred in response to a change in proton motive force. When incubated anaerobically in the light, the movement of R. sphaeroides up a light gradient depended on photosynthetic electron transport. When incubated aerobically, high-intensity actinic illumination inhibited oxygen uptake and aerotaxis. In a low-intensity light gradient the phototactic response was inhibited by oxygen. These results are discussed in relation to the interaction of the electron transfer chains and their roles in controlling tactic responses in R. sphaeroides.
机译:在非严格厌氧条件下,在分支呼吸电子转移链和光合电子转移链的光发达组分中生长的球形红假单胞菌。两种呼吸途径均对鱼藤酮和高浓度的氰化物敏感,但通过添加低浓度的氰化物或抗霉素A只能部分抑制氧的吸收。在黑暗中厌氧孵育时,球形红球菌对烟草中的氧梯度呈正响应。没有鱼藤酮。在存在鱼藤酮的情况下,仅当该通路的抗霉素A敏感分支起作用时才发生气浮性,尽管两个分支仍会减少氧气。尽管沿呼吸链有电子运动,但只有在质子动力改变的情况下才会发生气动力。当在光下厌氧孵育时,球形红球菌沿光梯度的运动取决于光合作用的电子传递。有氧培养时,高强度的光化照射会抑制氧气的吸收和需氧量。在低强度的光梯度中,光致反应被氧气抑制。讨论了这些结果,涉及电子转移链的相互作用及其在控制球形红球菌战术反应中的作用。

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