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Multi‐omics approach to elucidate the gut microbiota activity: Metaproteomics and metagenomics connection

机译:阐明肠道微生物群活动的多OMICS方法:标准组织和偏心神经连接

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Abstract Over the last few years, the application of high‐throughput meta‐omics methods has provided great progress in improving the knowledge of the gut ecosystem and linking its biodiversity to host health conditions, offering complementary support to classical microbiology. Gut microbiota plays a crucial role in relevant diseases such as obesity or cardiovascular disease (CVD), and its regulation is closely influenced by several factors, such as dietary composition. In fact, polyphenol‐rich diets are the most palatable treatment to prevent hypertension associated with CVD, although the polyphenol–microbiota interactions have not been completely elucidated. For this reason, the aim of this study was to evaluate microbiota effect in obese rats supplemented by hesperidin, after being fed with cafeteria or standard diet, using a multi meta‐omics approaches combining strategy of metagenomics and metaproteomics analysis. We reported that cafeteria diet induces obesity, resulting in changes in the microbiota composition, which are related to functional alterations at proteome level. In addition, hesperidin supplementation alters microbiota diversity and also proteins involved in important metabolic pathways. Overall, going deeper into strategies to integrate omics sciences is necessary to understand the complex relationships between the host, gut microbiota, and diet.
机译:摘要在过去的几年中,高通量的元组学方法的应用在改善肠道生态系统的知识和连接它的生物多样性将主机的健康状况,提供古典微生物补充支持提供了巨大的进步。肠道菌群发挥相关疾病,如肥胖或心血管疾病(CVD)至关重要的作用,它的监管是由几个因素,如饮食成分密切的影响。事实上,富含多酚的饮食是最可口的治疗,以防止心血管疾病相关的高血压,虽然多酚的微生物作用尚未完全阐明。出于这个原因,这项研究的目的是评估在用橙皮苷补充,与食堂或标准饮食被送入后肥胖大鼠微生物作用,使用多元组学方法结合起来的宏基因组学和metaproteomics分析策略。我们报道了自助饮食诱导的肥胖,从而导致菌群组成的变化,它们在蛋白质水平与功能改变。此外,橙皮苷补充剂会改变微生物的多样性和蛋白质也参与重要代谢途径。总体而言,深入到战略整合组学科学有必要了解主机,肠道菌群,与饮食之间的复杂关系。

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