首页> 外文期刊>Journal of bacteriology >The eubacterium Ectothiorhodospira halophila is negatively phototactic, with a wavelength dependence that fits the absorption spectrum of the photoactive yellow protein.
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The eubacterium Ectothiorhodospira halophila is negatively phototactic, with a wavelength dependence that fits the absorption spectrum of the photoactive yellow protein.

机译:真核嗜盐细菌嗜硫球菌螺旋菌具有负光趋化作用,其波长依赖性适合光敏性黄色蛋白质的吸收光谱。

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The motile, alkalophilic, and extremely halophilic purple sulfur bacterium Ectothiorhodospira halophila is positively photophobotactic. This response results in the accumulation of bacteria in light spots (E. Hustede, M. Liebergesell, and H. G. Schlegel, Photochem. Photobiol. 50:809-815, 1989; D. E. McRee, J. A. Tainer, T. E. Meyer, J. Van Beeumen, M. A. Cusanovich, and E. D. Getzoff, Proc. Natl. Acad. Sci. USA 86:6533-6537, 1989; also, this work). In this study, we demonstrated that E. halophila is also negatively phototactic. Video analysis of free-swimming bacteria and the formation of cell distribution patterns as a result of light-color boundaries in an anaerobic suspension of cells revealed the existence of a repellent response toward intense (but nondamaging) blue light. In the presence of saturating background photosynthetic light, an increase in the intensity of blue light induced directional switches, whereas a decrease in intense blue light gave rise to suppression of these reversals. To our knowledge, this is the first report of a true repellent response to light in a free-swimming eubacterium, since the blue light response in Escherichia coli and Salmonella typhimurium (B. L. Taylor and D. E. Koshland, Jr., J. Bacteriol. 123:557-569, 1975), which requires an extremely high light intensity, is unlikely to be a sensory process. The wavelength dependence of this negative photoresponse was determined with narrow band pass interference filters. It showed similarity to the absorption spectrum of the photoactive yellow protein from E. halophila.
机译:运动的,嗜碱的和极嗜盐的紫色硫细菌嗜盐嗜盐菌螺旋藻具有积极的光趋化作用。这种反应会导致细菌在亮点中积聚(E. Hustede,M. Liebergesell和HG Schlegel,Photochem。Photobiol。50:809-815,1989; DE McRee,JA Tainer,TE Meyer,J.Van Beeumen, MA Cusanovich和ED Getzoff,美国国家科学院院刊86:6533-6537,1989;也是这项工作)。在这项研究中,我们证明了嗜盐大肠杆菌也具有消光作用。对自由游动细菌的视频分析以及由于厌氧细胞悬浮液中的浅色边界而形成的细胞分布模式,显示存在对强烈(但无损害)蓝光的排斥反应。在饱和的背景光合作用光的存在下,蓝光强度的增加会引起方向转换,而蓝光强度的降低会抑制这些逆转。据我们所知,这是关于自由游动的真细菌中对光的真正驱避反应的首次报道,因为大肠杆菌和鼠伤寒沙门氏菌中的蓝光反应(BL Taylor和DE Koshland,Jr.,J.Bacteriol.123:要求极高的光强度的557-569,1975)不太可能是感觉过程。用窄带通干涉滤光片确定该负光响应的波长依赖性。它显示与嗜盐大肠杆菌的光敏黄色蛋白的吸收光谱相似。

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