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Metabolism, Physiology And Biotechnological Applications of Halobacteria

机译:盐杆菌的代谢,生理和生物技术应用

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Halophiles ( lat . “salt-loving”) is the taxonomic group of extreme aerobic microorganisms that live in conditions of high salinity – in the seas, salt lakes, saline soils etc. These microorganisms are known to reddish patina on products, preserved with using large quantities of salt (NaCl). Halophiles were isolated for the first time at the beginning of the XX century from the marine flora estuary mud, but their systematic study was started only at the end of the second decade of the XX century. The internal environment of the human body is not suitable for existence of halobacteria, since none of them are known to have pathogenic forms. Halobacteria have great practical potential for using in molecular bioelectronics and bio-nanotechnology due to their unique ability to convert the energy of sunlight into electrochemical energy of protons H + due to the presence in their cells a special photo transforming retinal containing integral protein – bacteriorhodopsin, the mechanism of action of which has been currently studied in detail. This article describes the characteristics of the metabolism and physiology of halophilic bacteria, as well as a method of biosynthesis and preparation of bacteriorhodopsin from purple membranes of cells of the extreme photoorganotrophic halobacterium Halobacterium halobium .
机译:嗜盐菌(拉丁语:“嗜盐”)是生活在高盐度条件下的极端需氧微生物(在海洋,盐湖,盐渍土壤等中)的分类学类别。已知这些微生物会使产品上的铜绿变红,使用后保存大量的盐(NaCl)。二十世纪初,嗜盐菌首次从海洋植物河口泥浆中分离出来,但是直到二十世纪第二十年末才开始对它们进行系统的研究。人体的内部环境不适合存在卤细菌,因为已知它们都不具有致病性形式。卤细菌由于其细胞中存在一种特殊的光转化性视网膜而含有整合蛋白–细菌视紫红质,具有将光能转化为质子H +的电化学能的独特能力,因此在分子生物电子学和生物纳米技术中具有巨大的应用潜力。目前已经详细研究了其作用机理。本文介绍了嗜盐细菌的代谢和生理特性,以及从极端光有机营养性嗜盐细菌Halobacterium halobium的紫色细胞膜生物合成和制备细菌视紫红质的方法。

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