饲粮纤维对断奶前犊牛肠道菌群组成、功能及共生相互作用的影响。

IF 4 2区 生物学 Q2 MICROBIOLOGY
Frontiers in Microbiology Pub Date : 2025-03-25 eCollection Date: 2025-01-01 DOI:10.3389/fmicb.2025.1554484
Wentao Lu, Xia Yi, Yuhan Ge, Xinyue Zhang, Kaidi Shen, Haohua Zhuang, Zhaoju Deng, Dengke Liu, Jie Cao, Chong Ma
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引用次数: 0

摘要

膳食纤维对维持胃肠道健康起着至关重要的作用。然而,其对犊牛肠道健康的保护作用仍有待充分阐明。本研究旨在探讨添加膳食纤维对断奶前犊牛肠道微生物群的影响及其在调节微生物代谢途径中的潜在作用。方法:采用随机对照试验方法,选取135头犊牛,随机分为3组:(1)添加菊粉组,(2)添加车前草壳粉组,(3)不添加膳食纤维组。在5个时间点(0、7、14、28和56日龄)采集无腹泻犊牛的粪便微生物群样本。宏基因组测序分析微生物组成和功能途径。此外,还进行了碳水化合物活性酶(CAZymes)的差异分析,以评估膳食纤维对肠道微生物群中碳水化合物代谢酶活性的影响。结果:与对照组相比,添加膳食纤维的犊牛双歧杆菌和普氏菌的丰度显著增加。这些细菌属通过调节次级胆汁酸代谢和类黄酮代谢途径来促进肠道保护。酶的差异分析显示,添加膳食纤维增加了碳水化合物代谢酶的丰度,在不同的纤维处理中观察到不同的微生物群落组成。值得注意的是,在56日龄时,饲喂PHP的犊牛体内存在包括梭状芽孢杆菌、普雷沃氏菌和拟杆菌在内的属间共生菌群,这表明一个合作的微生物网络可能有助于肠道内稳态。讨论:本研究的结果强调了膳食纤维对小牛肠道微生物群的有益作用,特别是在增强微生物多样性和与碳水化合物代谢相关的酶活性方面。在php喂养的犊牛中观察到的微生物共生提示了其在维持肠道内稳态中的潜在作用。这些见解为优化饮食干预以促进过渡时期犊牛肠道健康提供了理论基础。需要进一步的研究来探索膳食纤维、肠道微生物群和宿主健康结果之间的相互作用机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of dietary fiber on the composition, function, and symbiotic interactions of intestinal microbiota in pre-weaned calves.

Introduction: Dietary fiber plays a crucial role in maintaining gastrointestinal health. However, its protective effects on the intestinal health of calves remain to be fully elucidated. This study aimed to investigate the impact of dietary fiber supplementation on the intestinal microbiota of pre-weaned calves and its potential role in modulating microbial metabolic pathways.

Methods: A randomized controlled trial was conducted, enrolling 135 calves that were randomly assigned into three groups: (1) inulin supplementation, (2) psyllium husk powder (PHP) supplementation, and (3) a control group receiving no dietary fiber. Fecal microbiota samples were collected from calves without diarrhea at five time points (0, 7, 14, 28, and 56 days of age). Metagenomic sequencing was performed to analyze microbial composition and functional pathways. Additionally, a differential analysis of carbohydrate-active enzymes (CAZymes) was performed to evaluate the effect of dietary fiber on carbohydrate metabolism enzyme activity within the intestinal microbiota.

Results: Calves supplemented with dietary fiber exhibited a significant increase in the abundance of Bifidobacterium and Prevotella compared to the control group. These bacterial genera contributed to intestinal protection by modulating secondary bile acid metabolism and flavonoid metabolism pathways. CAZymes differential analysis revealed an increased abundance of carbohydrate metabolism enzymes in response to dietary fiber supplementation, with distinct microbial community compositions observed among different fiber treatments. Notably, at 56 days of age, calves fed PHP harbored intergeneric symbiotic clusters comprising Clostridium, Prevotella, and Bacteroides, suggesting a cooperative microbial network that may contribute to intestinal homeostasis.

Discussion: The findings of this study highlight the beneficial effects of dietary fiber on calf intestinal microbiota, particularly in enhancing microbial diversity and enzymatic activity related to carbohydrate metabolism. The observed microbial symbiosis in PHP-fed calves suggests a potential role in maintaining intestinal homeostasis. These insights provide a theoretical foundation for optimizing dietary interventions to promote gut health in calves during the transition period. Further research is warranted to explore the mechanistic interactions between dietary fiber, gut microbiota, and host health outcomes.

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来源期刊
CiteScore
7.70
自引率
9.60%
发文量
4837
审稿时长
14 weeks
期刊介绍: Frontiers in Microbiology is a leading journal in its field, publishing rigorously peer-reviewed research across the entire spectrum of microbiology. Field Chief Editor Martin G. Klotz at Washington State University is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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