Large intestinal nutritional and physicochemical parameters from different dog sizes reshape canine microbiota structure and functions in vitro.

IF 4.2 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Bioengineered Pub Date : 2024-12-01 Epub Date: 2024-03-12 DOI:10.1080/21655979.2024.2325713
Charlotte Deschamps, Delphine Humbert, Sandrine Chalancon, Caroline Achard, Emmanuelle Apper, Sylvain Denis, Stéphanie Blanquet-Diot
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Abstract

Different dog sizes are associated with variations in large intestinal physiology including gut microbiota, which plays a key role in animal health. This study aims to evaluate, using the CANIM-ARCOL (Canine Mucosal Artificial Colon), the relative importance of gut microbes versus physicochemical and nutritional parameters of the canine colonic environment in shaping microbiota structure and functions. CANIM-ARCOL was set up to reproduce nutrient availability, bile acid profiles, colonic pH, and transit time from small, medium, or large dogs according to in vivo data, while bioreactors were all inoculated with a fecal sample collected from medium size dogs (n = 2). Applying different dog size parameters resulted in a positive association between size and gas or SCFA production, as well as distinct microbiota profiles as revealed by 16S Metabarcoding. Comparisons with in vivo data from canine stools and previous in vitro results obtained when CANIM-ARCOL was inoculated with fecal samples from three dog sizes revealed that environmental colonic parameters were sufficient to drive microbiota functions. However, size-related fecal microbes were necessary to accurately reproduce in vitro the colonic ecosystem of small, medium, and large dogs. For the first time, this study provides mechanistic insights on which parameters from colonic ecosystem mainly drive canine microbiota in relation to dog size. The CANIM-ARCOL can be used as a relevant in vitro platform to unravel interactions between food or pharma compounds and canine colonic microbiota, under different dog size conditions. The potential of the model will be extended soon to diseased situations (e.g. chronic enteropathies or obesity).

不同体型犬的大肠营养和理化参数在体外重塑了犬微生物群的结构和功能。
不同体型的狗与包括肠道微生物群在内的大肠生理学变化有关,而肠道微生物群对动物健康起着关键作用。本研究旨在利用 CANIM-ARCOL(犬黏膜人工结肠)评估肠道微生物与犬结肠环境理化和营养参数在塑造微生物群结构和功能方面的相对重要性。CANIM-ARCOL 的设置是为了根据体内数据再现小型、中型或大型犬的营养可用性、胆汁酸概况、结肠 pH 值和转运时间,而生物反应器都接种了从中型犬(n = 2)收集的粪便样本。采用不同的狗体型参数会导致狗的体型与气体或 SCFA 的产生呈正相关,16S Metabarcoding 也会显示出不同的微生物群特征。将 CANIM-ARCOL 接种到三种体型的狗的粪便样本中,与狗粪便的体内数据和以前的体外结果进行比较,发现环境结肠参数足以驱动微生物群功能。不过,要在体外准确再现小型犬、中型犬和大型犬的结肠生态系统,还需要与体型相关的粪便微生物。这项研究首次从机理上揭示了结肠生态系统中哪些参数主要驱动与犬体型有关的犬微生物群。CANIM-ARCOL 可作为一个相关的体外平台,用于揭示不同体型条件下食物或药物化合物与犬结肠微生物群之间的相互作用。该模型的潜力将很快扩展到疾病情况下(如慢性肠病或肥胖症)。
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
Bioengineered
Bioengineered BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
8.20
自引率
28.60%
发文量
1114
审稿时长
17 weeks
期刊介绍: Bioengineered provides a platform for publishing high quality research on any aspect of genetic engineering which involves the generation of recombinant strains (both prokaryote and eukaryote) for beneficial applications in food, medicine, industry, environment and bio-defense.
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