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Biosynthesis of hopanoids by sulfate-reducing bacteria (genus Desulfovibrio)

机译:硫酸盐还原菌(Desulfovibrio属)的生物合成类胡萝卜素

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Sulfate reduction accounts for about a half of the remineralization of organic carbon in anoxic marine shelf regions. Moreover, it was already a major microbial process in the very early ocean at least 2.4 billion years before the present. Here we demonstrate for the first time the capability of sulfate-reducing bacteria (SRB) to biosynthesize hopanoids, compounds that are quantitatively important and widely distributed biomarkers in recent and fossil sediments dating back to the late Archean. We found high concentrations (9.8-12.3 mg per gram of dry cells) of non-extended and extended bacteriohopanoids (bacteriohopanetetrol, aminobacteriohopanetriol, aminobacteriohopanetetrol) in pure cultures of SRB belonging to the widely distributed genus Desulfovibrio. Biohopanoids were found - considered as membrane rigidifiers - in more than 50% of bacterial species analysed so far. However, their biosynthesis appeared to be restricted to aerobes or facultative anaerobes with a very few recently described exceptions. Consequently, findings of sedimentary hopanoids are often used as indication for oxygenated settings. Nevertheless, our findings shed new light on the presence of hopanoids in specific anoxic settings and suggests that SRB are substantial sources of this quantitatively important lipid class in recent but also past anoxic environments.
机译:硫酸盐的还原约占缺氧海陆架区域有机碳再矿化的一半。而且,在距今至少24亿年前的很早的海洋中,它已经是一个主要的微生物过程。在这里,我们首次证明了硫酸盐还原细菌(SRB)能够生物合成类胡萝卜素的能力,类胡萝卜素在数量上很重要,并且在近代和古宙时代的化石沉积物中具有广泛的生物标记。我们在属于广泛分布的Desulfovibibrio属的SRB纯培养物中发现了高浓度(每克干细胞9.8-12.3 mg)未扩展和扩展的类细菌类细菌(细菌类紫杉醇,氨基细菌类紫杉醇,氨基细菌类紫杉醇)。迄今为止,已经在超过50%的细菌物种中发现了生物类胡萝卜素-被认为是膜硬化剂。但是,它们的生物合成似乎仅限于需氧菌或兼性厌氧菌,最近很少有例外。因此,沉积类胡hop的发现常被用作含氧环境的指示。然而,我们的发现为特定的缺氧环境中类胡萝卜素的存在提供了新的思路,并表明SRB是近来也是过去的缺氧环境中这种数量重要的脂质类的重要来源。

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