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The Function of Gas Vesicles in Halophilic Archaeaand Bacteria: Theories and Experimental Evidence

机译:气体囊泡在嗜盐古细菌和细菌中的功能:理论和实验证据

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摘要

A few extremely halophilic Archaea (Halobacterium salinarum, Haloquadratum walsbyi, Haloferax mediterranei, Halorubrum vacuolatum, Halogeometricum borinquense, Haloplanus spp.) possess gas vesicles that bestow buoyancy on the cells. Gas vesicles are also produced by the anaerobic endospore-forming halophilic Bacteria Sporohalobacter lortetii and Orenia sivashensis. We have extensive information on the properties of gas vesicles in Hbt. salinarum and Hfx. mediterranei and the regulation of their formation. Different functions were suggested for gas vesicle synthesis: buoying cells towards oxygen-rich surface layers in hypersaline water bodies to prevent oxygen limitation, reaching higher light intensities for the light-driven proton pump bacteriorhodopsin, positioning the cells optimally for light absorption, light shielding, reducing the cytoplasmic volume leading to a higher surface-area-to-volume ratio (for the Archaea) and dispersal of endospores (for the anaerobic spore-forming Bacteria). Except for Hqr. walsbyi which abounds in saltern crystallizer brines, gas-vacuolate halophiles are not among the dominant life forms in hypersaline environments. There only has been little research on gas vesicles in natural communities of halophilic microorganisms, and the few existing studies failed to provide clear evidence for their possible function. This paper summarizes the current status of the different theories why gas vesicles may provide a selective advantage to some halophilic microorganisms.
机译:一些极嗜盐的古细菌(盐杆菌,盐生嗜盐菌,地中海嗜盐菌,空心嗜盐菌,Halogeometricum borinquense,Haloplanus spp。)具有气体囊泡,可赋予细胞浮力。形成厌氧性内生孢子的嗜盐细菌Sporohalobacter lortetii和Orenia sivashensis也产生气体囊泡。我们对Hbt中的气体囊泡具有广泛的了解。 salinarum和Hfx。 mediterranei及其形成的调控。提出了用于气体囊泡合成的不同功能:将细胞浮向高盐水体中的富氧表面层,以防止氧气限制,使光驱动质子泵细菌视紫红质达到更高的光强度,将细胞最佳地定位以进行光吸收,遮光,降低细胞质体积,导致更高的表面积/体积比(对于古细菌)和内生孢子的散布(对于厌氧孢子形成细菌)。 Hqr除外。在盐析结晶器盐水中盛产的walsbyi,高真空环境中的气体-真空卤化物都不是主要的生命形式。在嗜盐微生物的自然群落中,关于气体囊泡的研究很少,现有的研究很少能为它们的可能功能提供清晰的证据。本文总结了为什么气体囊泡可以为某些嗜盐微生物提供选择性优势的不同理论的现状。

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