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Biosynthesis of 2-methylbacteriohopanepolyols by an anoxygenic phototroph

机译:产氧光养剂对2-甲基细菌杂多酚的生物合成

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Sedimentary 2-methyhopanes have been used as biomarker proxies for cyanobacteria, the only known bacterial clade capable of oxygenic photosynthesis and the only group of organisms found thus far to produce abundant 2-methylbacteriohopanepolyols (2-MeBHPs). Here, we report the identification of significant quantities of 2-MeBHP in two strains of the anoxygenic phototroph Rhodopseudomonas palustris. Biosynthesis of 2-MeBHP can occur in the absence of O_2, deriving the C-2 methyl group from methionine. The relative abundance of 2-MeBHP varies considerably with culture conditions, ranging from 13.3% of total bacteriohopanepolyol (BHP) to trace levels of methyl-ation. Analysis of intact BHPs reveals the presence of methylated bacteriohopane-32,33,34,35-tetrol but no detectable methyl-ation of 35-aminobacteriohopane-32,33,34-triol. Our results demonstrate that an anoxygenic photoautotroph is capable of generating 2-MeBHPs and show that the potential origins of sedimentary 2-methylhopanoids are more diverse than previously thought.
机译:沉积的2-甲基甲胆碱已被用作蓝细菌的生物标志物代理,它是唯一已知的能够进行氧合光合作用的细菌进化枝,并且是迄今为止发现的唯一能够产生大量2-甲基细菌六甲多酚(2-MeBHPs)的生物体。在这里,我们报告了在两个产氧光养菌Rhodopseudomonas palustris的两个菌株中大量2-MeBHP的鉴定。 2-MeBHP的生物合成可以在不存在O_2的情况下进行,而O_2是从蛋氨酸衍生出C-2甲基。 2-MeBHP的相对丰度随培养条件的不同而有很大差异,范围从总细菌紫杉醇(BHP)的13.3%到痕量甲基化水平。完整BHP的分析表明存在甲基化的细菌紫杉醇32、33、34、35-四醇,但未检测到35-氨基细菌紫杉醇32、33、34-三醇的甲基化。我们的研究结果表明,产氧的自养生物能够产生2-MeBHP,并且表明沉积的2-甲基类黄酮的潜在来源比以前认为的要多样化。

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