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基因组变异和饮食对黑腹果蝇代谢表型和微生物组组成的影响。

The impact of genome variation and diet on the metabolic phenotype and microbiome composition of Drosophila melanogaster.

机构信息

Institute for Mathematical Modeling of Biological Systems, Heinrich Heine University, Duesseldorf, Germany.

Systems Biology of Lipid Metabolism, Heinrich Heine University, Duesseldorf, Germany.

出版信息

Sci Rep. 2018 Apr 18;8(1):6215. doi: 10.1038/s41598-018-24542-5.

Abstract

The metabolic phenotype of an organism depends on a complex regulatory network, which integrates the plethora of intrinsic and external information and prioritizes the flow of nutrients accordingly. Given the rise of metabolic disorders including obesity, a detailed understanding of this regulatory network is in urgent need. Yet, our level of understanding is far from completeness and complicated by the discovery of additional layers in metabolic regulation, such as the impact of the microbial community present in the gut on the hosts' energy storage levels. Here, we investigate the interplay between genome variation, diet and the gut microbiome in the shaping of a metabolic phenotype. For this purpose, we reared a set of fully sequenced wild type Drosophila melanogaster flies under basal and nutritionally challenged conditions and performed metabolic and microbiome profiling experiments. Our results introduce the fly as a model system to investigate the impact of genome variation on the metabolic response to diet alterations and reveal candidate single nucleotide polymorphisms associated with different metabolic traits, as well as metabolite-metabolite and metabolite-microbe correlations. Intriguingly, the dietary changes affected the microbiome composition less than anticipated. These results challenge the current view of a rapidly changing microbiome in response to environmental fluctuations.

摘要

生物体的代谢表型取决于一个复杂的调控网络,该网络整合了大量的内在和外在信息,并据此优先分配营养物质的流动。鉴于代谢紊乱(包括肥胖)的增多,我们急需深入了解这一调控网络。然而,我们的理解程度还远远不够,而且还受到代谢调控中额外层面的影响,例如肠道中存在的微生物群落对宿主能量储存水平的影响。在这里,我们研究了基因组变异、饮食和肠道微生物组在塑造代谢表型方面的相互作用。为此,我们在基础和营养挑战条件下饲养了一组完全测序的野生型黑腹果蝇,并进行了代谢和微生物组分析实验。我们的研究结果介绍了果蝇作为一个模型系统,可用于研究基因组变异对饮食改变的代谢反应的影响,并揭示了与不同代谢特征相关的候选单核苷酸多态性,以及代谢物-代谢物和代谢物-微生物的相关性。有趣的是,饮食变化对微生物组组成的影响不如预期的那么大。这些结果挑战了当前关于微生物组对环境波动快速变化的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7d0/5906449/738982813e29/41598_2018_24542_Fig1_HTML.jpg

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