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Interspecies Systems Biology Uncovers Metabolites Affecting C. elegans Gene Expression and Life History Traits

机译:种间系统生物学发现影响线虫基因表达和生命史特征的代谢产物

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摘要

Diet greatly influences gene expression and physiology. In mammals, elucidating the effects and mechanisms of individual nutrients is challenging due to the complexity of both the animal and its diet. Here, we used an interspecies systems biology approach with Caenorhabditis elegans and two of its bacterial diets, Escherichia coli and Comamonas aquatica, to identify metabolites that affect the animal's gene expression and physiology. We identify vitamin B12 as the major dilutable metabolite provided by Comamonas aq. that regulates gene expression, accelerates development, and reduces fertility but does not affect lifespan. We find that vitamin B12 has a dual role in the animal: it affects development and fertility via the methionine/SAdenosylmethionine (SAM) cycle and breaks down the short-chain fatty acid propionic acid, preventing its toxic buildup. Our interspecies systems biology approach provides a paradigm for understanding complex interactions between diet and physiology.
机译:饮食极大地影响基因表达和生理。在哺乳动物中,由于动物及其饮食的复杂性,阐明单个营养素的作用和机理具有挑战性。在这里,我们采用线虫秀丽隐杆线虫及其两种细菌饮食(大肠埃希氏菌和水生Comamonas aquatica)的种间系统生物学方法来鉴定影响动物基因表达和生理的代谢物。我们确定维生素B12是Comamonas aq提供的主要可稀释代谢物。调节基因表达,加速发育并降低生育力,但不影响寿命。我们发现维生素B12在动物中具有双重作用:它通过蛋氨酸/ SA腺苷蛋氨酸(SAM)循环影响发育和繁殖力,并分解短链脂肪酸丙酸,防止其毒性积聚。我们的种间系统生物学方法为理解饮食与生理之间的复杂相互作用提供了范例。

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