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源自 的发酵产物促进大口黑鲈的肝肠健康

Fermentation Products Originated from Promote Hepatic-Intestinal Health in Largemouth Bass, .

作者信息

Liu Kaifang, Liu Shubin, Feng Dexiang, Xun Pengwei, Jiang Hanjun, Zhang Yanwei, Yuan Gaoliang, Guo Xusheng

机构信息

College of Fisheries, Xinyang Agriculture and Forestry University, Xinyang 464000, China.

Fishery Biological Engineering Technology Research Center of Henan Province, Xinyang 464000, China.

出版信息

Biology (Basel). 2025 Jun 2;14(6):646. doi: 10.3390/biology14060646.

Abstract

The fermentation product FP-WeiGuangSu is regarded as a novel, green and efficient antibiotic substitute. Such products constitute one of the principal strategies for addressing bacterial diseases in aquaculture in the future. This study investigates the effects of FPs derived from on the antioxidant capacity and gut microbiota of Largemouth Bass (). Experimental diets containing 0, 1%, 3% and 5% FPs (Control, H1, H2 and H3) were fed to . Although short-term administration of FPs exerted no significant influence on the growth performance of Largemouth Bass, serological findings demonstrated that supplementation with FPs decreased the contents of the liver injury markers ALT, AST and AKP, along with liver MDA content, and enhanced antioxidant capacity (SOD, CAT and GSH-px). Notably, the addition of 1% FPs significantly improved the systemic antioxidant performance (SOD, CAT, GSH-px and T-AOC). Moreover, the FP supplementation increased the expression levels of and , and lipolysis-related genes. The results of gut microbiota analysis revealed that FPs significantly altered the diversity and structure of gut microbiota. The LEfSe results indicated that the microbial marker of the control group was , those of the H1 group were and , those of the H2 group were , and g_unclassified_, and that of the H3 group was . The most significant microbial marker upon the addition of FPs was , and the pathways for biosynthesis of secondary metabolites, biosynthesis of antibiotics, and biosynthesis of amino acids were significantly activated. The Bugbase analysis results suggested that, compared with the control group, the abundance of anaerobic bacteria in the FP group decreased, while the abundance of microorganisms with mobile-element-containing and oxidative-stress-tolerant phenotypes increased. Hence, this study demonstrated that 1-3% FP dietary supplementation can be used to enhance antioxidant ability, and liver and intestine health of in the aquaculture industry and can be regarded as a promising feed additive in aquaculture.

摘要

发酵产物FP-维生素被视为一种新型、绿色且高效的抗生素替代品。这类产品构成了未来应对水产养殖中细菌性疾病的主要策略之一。本研究调查了源自[具体来源未明确]的FP对大口黑鲈抗氧化能力和肠道微生物群的影响。将含有0%、1%、3%和5% FP的实验饲料(对照组、H1、H2和H3)投喂给[具体对象未明确]。尽管短期投喂FP对大口黑鲈的生长性能没有显著影响,但血清学结果表明,补充FP可降低肝损伤标志物ALT、AST和AKP的含量以及肝脏MDA含量,并增强抗氧化能力(SOD、CAT和GSH-px)。值得注意的是,添加1% FP显著提高了全身抗氧化性能(SOD、CAT、GSH-px和T-AOC)。此外,补充FP增加了[具体基因未明确]和[具体基因未明确]以及脂解相关基因的表达水平。肠道微生物群分析结果显示,FP显著改变了肠道微生物群的多样性和结构。LEfSe结果表明,对照组的微生物标志物是[具体标志物未明确],H1组的是[具体标志物未明确]和[具体标志物未明确],H2组的是[具体标志物未明确]、[具体标志物未明确]和g_unclassified_,H3组的是[具体标志物未明确]。添加FP后最显著的微生物标志物是[具体标志物未明确],次生代谢产物生物合成、抗生素生物合成和氨基酸生物合成途径被显著激活。Bugbase分析结果表明,与对照组相比,FP组厌氧菌的丰度降低,而具有含移动元件和耐氧化应激表型的微生物丰度增加。因此,本研究表明,在水产养殖业中,日粮补充1 - 3%的FP可用于增强[具体对象未明确]的抗氧化能力以及肝脏和肠道健康,可被视为水产养殖中一种有前景的饲料添加剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/249b/12189297/52cf28f9f654/biology-14-00646-g001.jpg

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