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Glucose modulates Drosophila longevity and immunity independent of the microbiota

机译:葡萄糖独立于微生物群调节果蝇的寿命和免疫力

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The acquisition of nutrients is essential for maintenance of metabolic processes in all organisms. Nutritional imbalance contributes to myriad metabolic disorders that include malnutrition, diabetes and even cancer. Recently, the importance of macronutrient ratio of food has emerged as a critical factor to determine health outcomes. Here we show that individual modifications to a completely defined diet markedly impact multiple aspects of organism wellbeing in Drosophila melanogaster . Through a longitudinal survey of several diets we demonstrate that increased levels of dietary glucose significantly improve longevity and immunity in adult Drosophila . Our metagenomic studies show that relative macronutrient levels not only influence the host, but also have a profound impact on microbiota composition. However, we found that elevated dietary glucose extended the lifespan of adult flies even when raised in a germ-free environment. Furthermore, when challenged with a chronic enteric infection, flies fed a diet with added glucose had increased survival times even in the absence of an intact microbiota. Thus, in contrast to known links between the microbiota and animal health, our findings uncover a novel microbiota-independent response to diet that impacts host wellbeing. As dietary responses are highly conserved in animals, we believe our results offer a general understanding of the association between glucose metabolism and animal health.
机译:营养素的获取对于维持所有生物体的代谢过程至关重要。营养失衡会导致多种代谢紊乱,包括营养不良,糖尿病甚至癌症。最近,食物中大量营养素比例的重要性已成为决定健康结果的关键因素。在这里,我们显示,对完全定义的饮食进行的个别修改会明显影响果蝇的生物福祉的多个方面。通过对几种饮食的纵向调查,我们表明增加饮食中葡萄糖的水平可以显着改善成年果蝇的寿命和免疫力。我们的宏基因组研究表明,相对大量营养素水平不仅影响宿主,而且对微生物群组成也产生深远影响。但是,我们发现,即使在无菌环境中饲养,高饮食葡萄糖也会延长成年果蝇的寿命。此外,当受到慢性肠感染的挑战时,即使饮食中没有完整的菌群,饲喂添加了葡萄糖的果蝇的存活时间也会增加。因此,与微生物群和动物健康之间的已知联系相反,我们的发现揭示了一种新型的与微生物群无关的饮食反应,这种反应会影响宿主的健康。由于饮食反应在动物中高度保守,因此我们相信我们的结果提供了对葡萄糖代谢与动物健康之间关系的一般理解。

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