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Rubrobacterales 目 5 个种中混合醚/酯、完整极性膜脂的优势:另一组不遵循“脂类划分”的细菌。

Dominance of mixed ether/ester, intact polar membrane lipids in five species of the order Rubrobacterales: Another group of bacteria not obeying the "lipid divide".

机构信息

NIOZ Royal Netherlands Institute for Sea Research, Department of Marine Microbiology and Biogeochemistry, Texel, the Netherlands; Department of Earth Sciences, Faculty of Geosciences, Utrecht University, Utrecht, the Netherlands.

NIOZ Royal Netherlands Institute for Sea Research, Department of Marine Microbiology and Biogeochemistry, Texel, the Netherlands.

出版信息

Syst Appl Microbiol. 2023 Apr;46(2):126404. doi: 10.1016/j.syapm.2023.126404. Epub 2023 Feb 24.

Abstract

The composition of the core lipids and intact polar lipids (IPLs) of five Rubrobacter species was examined. Methylated (ω-4) fatty acids (FAs) characterized the core lipids of Rubrobacter radiotolerans, R. xylanophilus and R. bracarensis. In contrast, R. calidifluminis and R. naiadicus lacked ω-4 methyl FAs but instead contained abundant (i.e., 34-41 % of the core lipids) ω-cyclohexyl FAs not reported before in the order Rubrobacterales. Their genomes contained an almost complete operon encoding proteins enabling production of cyclohexane carboxylic acid CoA thioester, which acts as a building block for ω-cyclohexyl FAs in other bacteria. Hence, the most plausible explanation for the biosynthesis of these cyclic FAs in R. calidifluminis and R. naiadicus is a recent acquisition of this operon. All strains contained 1-O-alkyl glycerol ether lipids in abundance (up to 46 % of the core lipids), in line with the dominance (>90 %) of mixed ether/ester IPLs with a variety of polar headgroups. The IPL head group distribution of R. calidifluminis and R. naiadicus differed, e.g. they lacked a novel IPL tentatively assigned as phosphothreoninol. The genomes of all five Rubrobacter species contained a putative operon encoding the synthesis of the 1-O-alkyl glycerol phosphate, the presumed building block of mixed ether/ester IPLs, which shows some resemblance with an operon enabling ether lipid production in various other aerobic bacteria but requires more study. The uncommon dominance of mixed ether/ester IPLs in Rubrobacter species exemplifies our recent growing awareness that the lipid divide between archaea and bacteria/eukaryotes is not as clear cut as previously thought.

摘要

五种红色杆菌属物种的核心脂类和完整极性脂类(IPL)的组成进行了研究。甲基化(ω-4)脂肪酸(FAs)是 Rubrobacter radiotolerans、R. xylanophilus 和 R. bracarensis 核心脂类的特征。相比之下,R. calidifluminis 和 R. naiadicus 缺乏 ω-4 甲基 FAs,但含有丰富的(即核心脂类的 34-41%)以前在 Rubrobacterales 目中未报道过的 ω-环已基 FAs。它们的基因组包含一个几乎完整的操纵子,编码能够产生环己烷羧酸 CoA 硫酯的蛋白质,环己烷羧酸 CoA 硫酯在其他细菌中作为 ω-环已基 FAs 的构建块。因此,R. calidifluminis 和 R. naiadicus 中环己基 FAs 生物合成的最合理解释是最近获得了这个操纵子。所有菌株都含有丰富的 1-O-烷基甘油醚脂类(高达核心脂类的 46%),这与混合醚/酯 IPLs 的优势(>90%)一致,混合醚/酯 IPLs 具有多种极性头基。R. calidifluminis 和 R. naiadicus 的 IPL 头基分布不同,例如,它们缺乏一种暂定分配给磷酸苏糖醇的新型 IPL。五种红色杆菌属物种的基因组都包含一个可能的操纵子,编码 1-O-烷基甘油磷酸的合成,这是混合醚/酯 IPLs 的假定构建块,它与能够在各种需氧细菌中产生醚脂类的操纵子有些相似,但需要进一步研究。红色杆菌属物种中混合醚/酯 IPLs 的异常优势说明了我们最近越来越意识到,古菌和细菌/真核生物之间的脂质界限并不像以前想象的那样清晰。

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