Impact of diet change on the gut microbiome of common marmosets (Callithrix jacchus).

IF 5 2区 生物学 Q1 MICROBIOLOGY mSystems Pub Date : 2024-08-20 Epub Date: 2024-07-08 DOI:10.1128/msystems.00108-24
Cassandra Tang-Wing, Ipsita Mohanty, MacKenzie Bryant, Katherine Makowski, Daira Melendez, Pieter C Dorrestein, Rob Knight, Andrés Mauricio Caraballo-Rodríguez, Celeste Allaband, Keith Jenné
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Abstract

Gastrointestinal diseases are the most frequently reported clinical problems in captive common marmosets (Callithrix jacchus), often affecting the health and welfare of the animal and ultimately their use as a research subject. The microbiome has been shown to be intimately connected to diet and gastrointestinal health. Here, we use shotgun metagenomics and untargeted metabolomics in fecal samples of common marmosets collected before, during, and after a dietary transition from a biscuit to a gel diet. The overall health of marmosets, measured as weight recovery and reproductive outcome, improved after the diet transition. Moreover, each marmoset pair had significant shifts in the microbiome and metabolome after the diet transition. In general, we saw a decrease in Escherichia coli and Prevotella species and an increase in Bifidobacterium species. Untargeted metabolic profiles indicated that polyamine levels, specifically cadaverine and putrescine, were high after diet transition, suggesting either an increase in excretion or a decrease in intestinal reabsorption at the intestinal level. In conclusion, our data suggest that Bifidobacterium species could potentially be useful as probiotic supplements to the laboratory marmoset diet. Future studies with a larger sample size will be beneficial to show that this is consistent with the diet change.

Importance: Appropriate diet and health of the common marmoset in captivity are essential both for the welfare of the animal and to improve experimental outcomes. Our study shows that a gel diet compared to a biscuit diet improves the health of a marmoset colony, is linked to increases in Bifidobacterium species, and increases the removal of molecules associated with disease. The diet transition had an influence on the molecular changes at both the pair and time point group levels, but only at the pair level for the microbial changes. It appears to be more important which genes and functions present changed rather than specific microbes. Further studies are needed to identify specific components that should be considered when choosing an appropriate diet and additional supplementary foods, as well as to validate the benefits of providing probiotics. Probiotics containing Bifidobacterium species appear to be useful as probiotic supplements to the laboratory marmoset diet, but additional work is needed to validate these findings.

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饮食变化对普通狨猴肠道微生物组的影响。
胃肠道疾病是圈养普通狨猴(Callithrix jacchus)最常见的临床问题,常常影响动物的健康和福利,并最终影响其作为研究对象的使用。微生物组已被证明与饮食和胃肠道健康密切相关。在这里,我们使用枪式元基因组学和非靶向代谢组学对普通狨猴粪便样本进行了研究,这些样本是在从饼干饮食过渡到凝胶饮食之前、期间和之后采集的。饮食转换后,狨猴的总体健康状况(以体重恢复和繁殖结果衡量)得到改善。此外,每对狨猴的微生物组和代谢组在饮食转换后都发生了显著变化。总的来说,我们发现大肠埃希氏菌和普雷沃特氏菌的数量减少了,而双歧杆菌的数量增加了。非靶向代谢图谱显示,多胺(特别是尸胺和腐胺)水平在饮食转换后较高,这表明肠道排泄增加或肠道重吸收减少。总之,我们的数据表明,双歧杆菌有可能成为实验室狨猴饮食中的益生菌补充剂。未来进行的样本量更大的研究将有助于证明这与饮食变化是一致的:重要意义:圈养普通狨猴的适当饮食和健康对动物福利和改善实验结果都至关重要。我们的研究表明,与饼干饮食相比,凝胶饮食能改善狨猴群的健康状况,与双歧杆菌种类的增加有关,并能增加与疾病相关的分子的清除。饮食过渡对分子变化在配对和时间点组水平上都有影响,但对微生物变化仅在配对水平上有影响。看来更重要的是哪些基因和功能发生了变化,而不是特定的微生物。还需要进一步研究,以确定在选择适当饮食和额外补充食品时应考虑的具体成分,并验证提供益生菌的益处。含有双歧杆菌的益生菌似乎可以作为实验室狨猴饮食的益生菌补充剂,但还需要更多的工作来验证这些发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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.
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