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通过调节瘤胃微生物和代谢产物,补充[具体物质未给出]可减轻生长过程中发生的氧化应激。

Dietary Supplementation with Reduces Oxidative Stress Occurring during Growth by Regulating Rumen Microbes and Metabolites.

作者信息

Pan Cheng, Li Haiyan, Wang Fuqiang, Qin Jianping, Huang Yanping, Zhao Wangsheng

机构信息

School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621000, China.

Shenmu Livestock Development Center, Yulin 719000, China.

出版信息

Animals (Basel). 2024 Mar 17;14(6):927. doi: 10.3390/ani14060927.

Abstract

Oxidative stress (OS) in ruminants is closely associated with disease; thus, improving antioxidant capacity is an important strategy for maintaining host health. (BR) could significantly improve host health and stress levels. However, the clear antioxidant mechanism of the function of BR remains unknown. In the current study, LC-MS metabolomics combined with 16S rRNA gene sequencing was employed to explore the effects of BR on rumen microbiota and metabolites in Shanbei Fine-Wool Sheep (SFWS), and Spearman correlation analyses of rumen microbiota, metabolites, and OS were performed to investigate the mechanism of antioxidant function of BR. Our results indicated that as SFWS grows, levels of OS and antioxidant capacity increase dramatically, but providing BR to SFWS enhances antioxidant capacity while decreasing OS. Rumen microbiota and OS are strongly correlated, with total antioxidant capacity (T-AOC) showing a significant negative correlation with and a positive correlation with . Importantly, the Chao1 index was significantly negatively correlated with malondialdehyde (MDA) and positively correlated with superoxide dismutase (SOD) and T-AOC. Two biomarkers connected to the antioxidant effects of BR, 5,6-DHET and LPA (a-25:0/0:0), were screened according to the results of metabolomics and Spearman analysis of rumen contents, and a significant relationship between the concentration of rumen metabolites and OS was found. Five metabolic pathways, including glycerolipid, glutathione, nucleotide, D-amino acid, and inositol phosphate metabolism, may have a role in OS. The integrated results indicate that rumen microbiota and metabolites are strongly related to OS and that BR is responsible for reducing OS and improving antioxidant capacity in post-weaned SFWS. These findings provide new strategies to reduce OS occurring during SFWS growth.

摘要

反刍动物体内的氧化应激(OS)与疾病密切相关;因此,提高抗氧化能力是维持宿主健康的重要策略。甜菜碱(BR)可以显著改善宿主健康和应激水平。然而,BR发挥作用的明确抗氧化机制仍不清楚。在本研究中,采用液相色谱-质谱联用代谢组学技术结合16S rRNA基因测序,探究BR对陕北细毛羊(SFWS)瘤胃微生物群和代谢产物的影响,并对瘤胃微生物群、代谢产物和OS进行Spearman相关性分析,以研究BR的抗氧化功能机制。我们的结果表明,随着SFWS的生长,OS水平和抗氧化能力显著增加,但给SFWS提供BR可增强抗氧化能力,同时降低OS。瘤胃微生物群与OS密切相关,总抗氧化能力(T-AOC)与[具体物质1]呈显著负相关,与[具体物质2]呈正相关。重要的是,Chao1指数与丙二醛(MDA)呈显著负相关,与超氧化物歧化酶(SOD)和T-AOC呈正相关。根据代谢组学结果和瘤胃内容物的Spearman分析,筛选出两种与BR抗氧化作用相关的生物标志物5,6-二羟基二十碳四烯酸(5,6-DHET)和溶血磷脂酸(LPA,a-25:0/0:0),并发现瘤胃代谢产物浓度与OS之间存在显著关系。包括甘油脂质、谷胱甘肽、核苷酸、D-氨基酸和肌醇磷酸代谢在内的五条代谢途径可能在OS中发挥作用。综合结果表明,瘤胃微生物群和代谢产物与OS密切相关,BR负责降低断奶后SFWS的OS并提高抗氧化能力。这些发现为减少SFWS生长过程中发生的OS提供了新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcc2/10967566/a11c33cc8d5f/animals-14-00927-g001.jpg

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