Response of the gut microbiome and metabolome to dietary fiber in healthy dogs.

IF 5 2区 生物学 Q1 MICROBIOLOGY mSystems Pub Date : 2025-01-21 Epub Date: 2024-12-23 DOI:10.1128/msystems.00452-24
Amrisha Bhosle, Matthew I Jackson, Aaron M Walsh, Eric A Franzosa, Dayakar V Badri, Curtis Huttenhower
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Abstract

Dietary fiber confers multiple health benefits originating from the expansion of beneficial gut microbial activity. However, very few studies have established the metabolic consequences of interactions among specific fibers, microbiome composition, and function in either human or representative animal models. In a study design reflective of realistic population dietary variation, fecal metagenomic and metabolomic profiles were analyzed from healthy dogs fed 12 test foods containing different fiber sources and quantities (5-13% as-fed basis). Taxa and functions were identified whose abundances were associated either with overall fiber intake or with specific fiber compositions. Fourteen microbial species were significantly enriched in response to ≥1 specific fiber source; enrichment of fiber-derived metabolites was more pronounced in response to these fiber sources. Positively associated fecal metabolites, including short-chain fatty acids, acylglycerols, fiber bound sugars, and polyphenols, co-occurred with microbes enriched in specific food groups. Critically, the specific metabolite pools responsive to differential fiber intake were dependent on differences both in individual microbial community membership and in overall ecological configuration. This helps to explain, for the first time, differences in microbiome-diet associations observed in companion animal epidemiology. Thus, our study corroborates findings in human cohorts and reinforces the role of personalized microbiomes even in seemingly phenotypically homogeneous subjects.

Importance: Consumption of dietary fiber changes the composition of the gut microbiome and, to a larger extent, the associated metabolites. Production of health-relevant metabolites such as short-chain fatty acids from fiber depends both on the consumption of a specific fiber and on the enrichment of beneficial metabolite-producing species in response to it. Even in a seemingly homogeneous population, the benefit received from fiber consumption is personalized and emphasizes specific fiber-microbe-host interactions. These observations are relevant for both population-wide and personalized nutrition applications.

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健康犬肠道微生物组和代谢组对膳食纤维的响应
膳食纤维具有多种健康益处,源于有益肠道微生物活动的扩大。然而,很少有研究在人类或代表性动物模型中确定特定纤维,微生物组组成和功能之间相互作用的代谢后果。在一项反映现实人群饮食变化的研究设计中,研究人员分析了健康犬饲喂12种含有不同纤维来源和数量(5-13%为饲粮基础)的测试食物的粪便宏基因组学和代谢组学特征。确定了其丰度与总纤维摄入量或特定纤维成分相关的分类群和功能。14种微生物对≥1种特定纤维源有显著的富集反应;纤维衍生代谢物的富集对这些纤维来源的反应更为明显。粪便代谢物,包括短链脂肪酸、酰基甘油、纤维结合糖和多酚,与特定食物组中富集的微生物共同发生正相关。关键是,对不同纤维摄入量有反应的特定代谢物池取决于个体微生物群落成员和整体生态配置的差异。这有助于首次解释在伴侣动物流行病学中观察到的微生物组-饮食关联的差异。因此,我们的研究证实了人类群体的发现,并加强了个性化微生物组的作用,即使在看似表型相同的受试者中也是如此。重要性:食用膳食纤维会改变肠道微生物群的组成,并在更大程度上改变相关的代谢物。从纤维中产生与健康有关的代谢物,如短链脂肪酸,既取决于特定纤维的消耗,也取决于有益代谢物产生物种的富集。即使在看似同质的人群中,从纤维消费中获得的好处也是个性化的,强调纤维-微生物-宿主的特定相互作用。这些观察结果与全人群和个性化营养应用相关。
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来源期刊
mSystems
mSystems Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
10.50
自引率
3.10%
发文量
308
审稿时长
13 weeks
期刊介绍: mSystems™ will publish preeminent work that stems from applying technologies for high-throughput analyses to achieve insights into the metabolic and regulatory systems at the scale of both the single cell and microbial communities. The scope of mSystems™ encompasses all important biological and biochemical findings drawn from analyses of large data sets, as well as new computational approaches for deriving these insights. mSystems™ will welcome submissions from researchers who focus on the microbiome, genomics, metagenomics, transcriptomics, metabolomics, proteomics, glycomics, bioinformatics, and computational microbiology. mSystems™ will provide streamlined decisions, while carrying on ASM''s tradition of rigorous peer review.
期刊最新文献
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