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Metabolite and transcriptome analysis of Campylobacter jejuni in vitro growth reveals a stationary-phase physiological switch

机译:在体外生长的弯曲杆菌的代谢物和转录体分析揭示了静止相的生理开关

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Campylobacter jejuni is a prevalent cause of food-borne diarrhoeal illness in humans. Understanding of the physiological and metabolic capabilities of the organism is limited. We report a detailed analysis of the C. jejuni growth cycle in batch culture. Combined transcriptomic, phenotypic and metabolic analysis demonstrates a highly dynamic ‘stationary phase’, characterized by a peak in motility, numerous gene expression changes and substrate switching, despite transcript changes that indicate a metabolic downshift upon the onset of stationary phase. Video tracking of bacterial motility identifies peak activity during stationary phase. Amino acid analysis of culture supernatants shows a preferential order of amino acid utilization. Proton NMR (1H-NMR) highlights an acetate switch mechanism whereby bacteria change from acetate excretion to acetate uptake, most probably in response to depletion of other substrates. Acetate production requires pta (Cj0688) and ackA (Cj0689), although the acs homologue (Cj1537c) is not required. Insertion mutants in Cj0688 and Cj0689 maintain viability less well during the stationary and decline phases of the growth cycle than wild-type C. jejuni, suggesting that these genes, and the acetate pathway, are important for survival.
机译:Campylobacter Jejuni是人类食品腹泻病的普遍原因。了解生物体的生理和代谢能力是有限的。我们在批量培养中报告了对C. Jejuni生长周期的详细分析。组合的转录组,表型和代谢分析表明了高度动态的“固定相”,其特征在于,尽管有转录性变化,但表现出在静止阶段发作后的代谢降档的转录变化,众多基因表达变化和衬底切换的特征是。细菌运动的视频跟踪识别静止阶段的峰值活动。培养上清液的氨基酸分析显示了氨基酸利用的优先阶。质子NMR(1H-NMR)突出醋酸酯开关机制,其中细菌从醋酸盐排泄到醋酸盐摄取,最可能是响应其他基材的耗尽。醋酸盐生产需要PTA(CJ0688)和Acka(CJ0689),尽管不需要ACS同源物(CJ1537C)。 CJ0688和CJ0689中的插入突变体在生长周期的静止和下降阶段期间保持活力,而不是野生型C. jejuni,这表明这些基因和醋酸盐途径对于存活是重要的。

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