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Strain-resolved microbial community proteomics reveals simultaneous aerobic and anaerobic function during gastrointestinal tract colonization of a preterm infant

机译:应变分解的微生物群落蛋白质组学揭示了早产儿胃肠道定殖期间同时有氧和无氧功能

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摘要

While there has been growing interest in the gut microbiome in recent years, it remains unclear whether closely related species and strains have similar or distinct functional roles and if organisms capable of both aerobic and anaerobic growth do so simultaneously. To investigate these questions, we implemented a high-throughput mass spectrometry-based proteomics approach to identify proteins in fecal samples collected on days of life 13–21 from an infant born at 28 weeks gestation. No prior studies have coupled strain-resolved community metagenomics to proteomics for such a purpose. Sequences were manually curated to resolve the genomes of two strains of Citrobacter that were present during the later stage of colonization. Proteome extracts from fecal samples were processed via a nano-2D-LC-MS/MS and peptides were identified based on information predicted from the genome sequences for the dominant organisms, Serratia and the two Citrobacter strains. These organisms are facultative anaerobes, and proteomic information indicates the utilization of both aerobic and anaerobic metabolisms throughout the time series. This may indicate growth in distinct niches within the gastrointestinal tract. We uncovered differences in the physiology of coexisting Citrobacter strains, including differences in motility and chemotaxis functions. Additionally, for both Citrobacter strains we resolved a community-essential role in vitamin metabolism and a predominant role in propionate production. Finally, in this case study we detected differences between genome abundance and activity levels for the dominant populations. This underlines the value in layering proteomic information over genetic potential.
机译:尽管近年来人们对肠道微生物组的兴趣日益增长,但尚不清楚密切相关的物种和菌株是否具有相似或不同的功能作用,以及能够同时进行有氧和厌氧生长的生物是否同时具有这种功能。为了研究这些问题,我们实施了一种基于高通量质谱的蛋白质组学方法,以鉴定从13周龄至21周出生的婴儿在妊娠28周时收集的粪便样品中的蛋白质。为此,以前没有研究将应变分辨的社区宏基因组学与蛋白质组学结合起来。手动整理序列以解析定殖后期存在的两种柠檬酸杆菌菌株的基因组。粪便样品中的蛋白质组提取物通过nano-2D-LC-MS / MS进行处理,并根据从优势生物,沙雷氏菌和两种柠檬酸杆菌菌株的基因组序列中预测的信息来鉴定肽。这些生物是兼性厌氧菌,蛋白质组学信息表明在整个时间序列中有氧和厌氧代谢的利用。这可能表明胃肠道内不同部位的生长。我们发现了共存柠檬酸杆菌菌株的生理差异,包括运动性和趋化性功能的差异。此外,对于两种柠檬酸杆菌菌株,我们都解决了维生素代谢中社区必需的作用和丙酸生产中的主要作用。最后,在本案例研究中,我们检测了优势种群的基因组丰度与活性水平之间的差异。这强调了在蛋白质组信息上覆盖遗传潜力的价值。

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