Heinzelmann Sandra M, Villanueva Laura, Sinke-Schoen Danielle, Sinninghe Damsté Jaap S, Schouten Stefan, van der Meer Marcel T J
Department of Marine Organic Biogeochemistry, NIOZ Royal Netherlands Institute for Sea Research Den Burg, Netherlands.
Department of Marine Organic Biogeochemistry, NIOZ Royal Netherlands Institute for Sea Research Den Burg, Netherlands ; Department of Earth Sciences, Faculty of Geosciences, Utrecht University Utrecht, Netherlands.
Front Microbiol. 2015 May 8;6:408. doi: 10.3389/fmicb.2015.00408. eCollection 2015.
Microorganisms are involved in all elemental cycles and therefore it is important to study their metabolism in the natural environment. A recent technique to investigate this is the hydrogen isotopic composition of microbial fatty acids, i.e., heterotrophic microorganisms produce fatty acids enriched in deuterium (D) while photoautotrophic and chemoautotrophic microorganisms produce fatty acids depleted in D compared to the water in the culture medium (growth water). However, the impact of factors other than metabolism have not been investigated. Here, we evaluate the impact of growth phase compared to metabolism on the hydrogen isotopic composition of fatty acids of different environmentally relevant microorganisms with heterotrophic, photoautotrophic and chemoautotrophic metabolisms. Fatty acids produced by heterotrophs are enriched in D compared to growth water with εlipid/water between 82 and 359‰ when grown on glucose or acetate, respectively. Photoautotrophs (εlipid/water between -149 and -264‰) and chemoautotrophs (εlipid/water between -217 and -275‰) produce fatty acids depleted in D. Fatty acids become, in general, enriched by between 4 and 46‰ with growth phase which is minor compared to the influence of metabolisms. Therefore, the D/H ratio of fatty acids is a promising tool to investigate community metabolisms in nature.
微生物参与了所有的元素循环,因此研究它们在自然环境中的代谢非常重要。最近用于研究这一问题的一项技术是分析微生物脂肪酸的氢同位素组成,即异养微生物产生的脂肪酸富含氘(D),而与培养基(生长用水)中的水相比,光合自养微生物和化能自养微生物产生的脂肪酸贫氘。然而,尚未研究代谢以外的其他因素的影响。在这里,我们评估了与代谢相比,生长阶段对具有异养、光合自养和化能自养代谢的不同环境相关微生物脂肪酸氢同位素组成的影响。与生长用水相比,异养生物产生的脂肪酸富含D,以葡萄糖或乙酸盐为生长底物时,脂质/水的ε值分别在82‰至359‰之间。光合自养生物(脂质/水的ε值在-149‰至-264‰之间)和化能自养生物(脂质/水的ε值在-217‰至-275‰之间)产生的脂肪酸贫氘。一般来说,随着生长阶段的推进,脂肪酸的富集程度在4‰至46‰之间,与代谢的影响相比,这一影响较小。因此,脂肪酸的D/H比是研究自然界群落代谢的一个很有前景的工具。