...
首页> 外文期刊>Applied and Environmental Microbiology >Mono- and Dialkyl Glycerol Ether Lipids in Anaerobic Bacteria: Biosynthetic Insights from the Mesophilic Sulfate Reducer Desulfatibacillum alkenivorans PF2803T
【24h】

Mono- and Dialkyl Glycerol Ether Lipids in Anaerobic Bacteria: Biosynthetic Insights from the Mesophilic Sulfate Reducer Desulfatibacillum alkenivorans PF2803T

机译:厌氧细菌中的单烷基和二烷基甘油醚脂质:中温硫酸盐还原剂脱硫链霉菌PF2803T的生物合成见解

获取原文
           

摘要

Bacterial glycerol ether lipids (alkylglycerols) have received increasing attention during the last decades, notably due to their potential role in cell resistance or adaptation to adverse environmental conditions. Major uncertainties remain, however, regarding the origin, biosynthesis, and modes of formation of these uncommon bacterial lipids. We report here the preponderance of monoalkyl- and dialkylglycerols (1-O-alkyl-, 2-O-alkyl-, and 1,2-O-dialkylglycerols) among the hydrolyzed lipids of the marine mesophilic sulfate-reducing proteobacterium Desulfatibacillum alkenivorans PF2803T grown on n-alkenes (pentadec-1-ene or hexadec-1-ene) as the sole carbon and energy source. Alkylglycerols account for one-third to two-thirds of the total cellular lipids (alkylglycerols plus acylglycerols), depending on the growth substrate, with dialkylglycerols contributing to one-fifth to two-fifths of the total ether lipids. The carbon chain distribution of the lipids of D. alkenivorans also depends on that of the substrate, but the chain length and methyl-branching patterns of fatty acids and monoalkyl- and dialkylglycerols are systematically congruent, supporting the idea of a biosynthetic link between the three classes of compounds. Vinyl ethers (1-alken-1′-yl-glycerols, known as plasmalogens) are not detected among the lipids of strain PF2803T. Cultures grown on different (per)deuterated n-alkene, n-alkanol, and n-fatty acid substrates further demonstrate that saturated alkylglycerols are not formed via the reduction of hypothetic alken-1′-yl intermediates. Our results support an unprecedented biosynthetic pathway to monoalkyl/monoacyl- and dialkylglycerols in anaerobic bacteria and suggest that n-alkyl compounds present in the environment can serve as the substrates for supplying the building blocks of ether phospholipids of heterotrophic bacteria.
机译:在过去的几十年中,细菌甘油醚脂质(烷基甘油)受到越来越多的关注,特别是由于它们在细胞抗性或适应不利环境条件方面的潜在作用。然而,关于这些罕见细菌脂质的来源,生物合成和形成方式仍存在主要不确定性。我们在这里报告了海洋中温硫酸盐还原性变形杆菌Desulfatibacillum alkenivorans PF2803T生长的海洋中的单烷基甘油和二烷基甘油(1-O-烷基-,2-O-烷基-和1,2-O-二烷基甘油)的优势在正构烯烃(十五碳1烯或十六碳1烯)上作为唯一的碳和能源。取决于生长底物,烷基甘油占总细胞脂质的三分之一至三分之二(烷基甘油加酰基甘油),而二烷基甘油占总醚脂质的五分之一至五分之二。 D. alkenivorans脂质的碳链分布也取决于底物,但是脂肪酸与单烷基甘油和二烷基甘油的链长和甲基支化模式在系统上是一致的,这支持了这三种之间的生物合成联系类化合物。在菌株PF2803T的脂质中未检测到乙烯基醚(1-烯烃-1'-基甘油,称为缩醛磷脂)。在不同的(全)氘代正链烯,正链烷醇和正脂肪酸底物上生长的培养物进一步表明,通过还原假设的alken-1'-基中间体不会形成饱和烷基甘油。我们的结果支持了厌氧细菌中单烷基/单酰基甘油和二烷基甘油的前所未有的生物合成途径,并表明环境中存在的正烷基化合物可以用作提供异养细菌醚磷脂结构单元的底物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号