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Impact of Dietary Resistant Starch on the Human Gut Microbiome, Metaproteome, and Metabolome

机译:饮食抗性淀粉对人体肠道微生物组,代谢组和代谢组的影响

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ABSTRACT Diet can influence the composition of the human microbiome, and yet relatively few dietary ingredients have been systematically investigated with respect to their impact on the functional potential of the microbiome. Dietary resistant starch (RS) has been shown to have health benefits, but we lack a mechanistic understanding of the metabolic processes that occur in the gut during digestion of RS. Here, we collected samples during a dietary crossover study with diets containing large or small amounts of RS. We determined the impact of RS on the gut microbiome and metabolic pathways in the gut, using a combination of “omics” approaches, including 16S rRNA gene sequencing, metaproteomics, and metabolomics. This multiomics approach captured changes in the abundance of specific bacterial species, proteins, and metabolites after a diet high in resistant starch (HRS), providing key insights into the influence of dietary interventions on the gut microbiome. The combined data showed that a high-RS diet caused an increase in the ratio of Firmicutes to Bacteroidetes , including increases in relative abundances of some specific members of the Firmicutes and concurrent increases in enzymatic pathways and metabolites involved in lipid metabolism in the gut. IMPORTANCE This work was undertaken to obtain a mechanistic understanding of the complex interplay between diet and the microorganisms residing in the intestine. Although it is known that gut microbes play a key role in digestion of the food that we consume, the specific contributions of different microorganisms are not well understood. In addition, the metabolic pathways and resultant products of metabolism during digestion are highly complex. To address these knowledge gaps, we used a combination of molecular approaches to determine the identities of the microorganisms in the gut during digestion of dietary starch as well as the metabolic pathways that they carry out. Together, these data provide a more complete picture of the function of the gut microbiome in digestion, including links between an RS diet and lipid metabolism and novel linkages between specific gut microbes and their metabolites and proteins produced in the gut.
机译:摘要饮食可以影响人类微生物组的组成,但是就其对微生物组功能潜能的影响而言,相对较少的饮食成分已得到系统地研究。膳食抗性淀粉(RS)已显示对健康有益,但我们对RS消化过程中肠道中发生的代谢过程缺乏机械理解。在这里,我们在饮食交叉研究期间收集了含有大量或少量RS的饮食样品。我们结合“组学”方法,包括16S rRNA基因测序,代谢组学和代谢组学,确定了RS对肠道微生物组和肠道代谢途径的影响。这种多组学方法捕获了高抗性淀粉(HRS)饮食后特定细菌种类,蛋白质和代谢产物的丰度变化,从而提供了饮食干预对肠道微生物组影响的重要见解。综合数据显示,高RS饮食会导致Firmicutes与Bacteroidetes的比率增加,包括Firmicutes某些特定成员的相对丰度增加,并且与肠道脂质代谢有关的酶促途径和代谢物同时增加。重要事项进行这项工作是为了获得对饮食与肠道中微生物之间复杂相互作用的机械理解。尽管已知肠道微生物在我们食用的食物的消化中起着关键作用,但人们对不同微生物的具体贡献还知之甚少。另外,消化过程中的代谢途径和代谢产物非常复杂。为了解决这些知识差距,我们使用了分子方法的组合来确定膳食淀粉消化过程中肠道中微生物的身份以及它们所进行的代谢途径。总之,这些数据提供了肠道微生物组在消化中的功能的更完整描述,包括RS饮食与脂质代谢之间的联系以及特定肠道微生物与其代谢产物和在肠道中产生的蛋白质之间的新颖联系。

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