Wong Adam C-N, Dobson Adam J, Douglas Angela E
Department of Entomology, Cornell University, Ithaca, NY14853, USA
Department of Entomology, Cornell University, Ithaca, NY14853, USA.
J Exp Biol. 2014 Jun 1;217(Pt 11):1894-901. doi: 10.1242/jeb.101725. Epub 2014 Feb 27.
Animal nutrition is profoundly influenced by the gut microbiota, but knowledge of the scope and core mechanisms of the underlying animal-microbiota interactions is fragmentary. To investigate the nutritional traits shaped by the gut microbiota of Drosophila, we determined the microbiota-dependent response of multiple metabolic and performance indices to systematically varied diet composition. Diet-dependent differences between Drosophila bearing its unmanipulated microbiota (conventional flies) and experimentally deprived of its microbiota (axenic flies) revealed evidence for: microbial sparing of dietary B vitamins, especially riboflavin, on low-yeast diets; microbial promotion of protein nutrition, particularly in females; and microbiota-mediated suppression of lipid/carbohydrate storage, especially on high sugar diets. The microbiota also sets the relationship between energy storage and body mass, indicative of microbial modulation of the host signaling networks that coordinate metabolism with body size. This analysis identifies the multiple impacts of the microbiota on the metabolism of Drosophila, and demonstrates that the significance of these different interactions varies with diet composition and host sex.
动物营养受到肠道微生物群的深刻影响,但对于潜在的动物与微生物群相互作用的范围和核心机制的了解并不完整。为了研究果蝇肠道微生物群塑造的营养特征,我们确定了多种代谢和性能指标对系统变化的饮食组成的微生物群依赖性反应。携带未操纵微生物群的果蝇(常规果蝇)与实验性去除微生物群的果蝇(无菌果蝇)之间的饮食依赖性差异揭示了以下证据:在低酵母饮食中,微生物对膳食B族维生素,尤其是核黄素的节省作用;微生物对蛋白质营养的促进作用,尤其是在雌性果蝇中;以及微生物群介导的对脂质/碳水化合物储存的抑制作用,尤其是在高糖饮食中。微生物群还设定了能量储存与体重之间的关系,表明微生物对协调代谢与体型的宿主信号网络的调节作用。该分析确定了微生物群对果蝇代谢的多种影响,并证明这些不同相互作用的重要性随饮食组成和宿主性别而变化。