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共生短小芽孢杆菌SE5产生的肽聚糖和脂磷壁酸在改善石斑鱼(斜带石斑鱼)生长、免疫力和肠道健康方面显示出协同作用。

Commensal Bacillus pumilus SE5-Derived Peptidoglycan and Lipoteichoic Acid Showed Synergistic Effects in Improving Growth, Immunity, and Intestinal Health of Grouper (Epinephelus coioides).

作者信息

Xu Jian-Ming, Cai Guo-He, Li Jie, Yang Hong-Ling, Ye Ji-Dan, Sun Yun-Zhang

机构信息

The Key Laboratory of Healthy Mariculture for the East China Sea, Ministry of Agriculture, Fisheries College, Jimei University, Xiamen, 361021, China.

Xiamen Key Laboratory for Feed Quality Testing and Safety Evaluation, Fisheries College, Jimei University, Xiamen, 361021, China.

出版信息

Probiotics Antimicrob Proteins. 2024 May 24. doi: 10.1007/s12602-024-10291-7.

DOI:10.1007/s12602-024-10291-7
PMID:38789900
Abstract

Commensal-derived peptidoglycan (PG) or lipoteichoic acid (LTA) can improve the growth, immunity, and intestinal health of fish, but it is not clear whether the two components have synergistic effects. To clarify this, grouper (Epinephelus coioides) was fed basal diet (CG) or diets containing 1.0 × 10 CFU/g heat-inactivated SE5 (HIB), PG (21.30 mg/kg), LTA (6.70 mg/kg), mixture (PL1) of PG (10.65 mg/kg) and LTA (3.35 mg/kg), and mixture (PL2) of PG (21.30 mg/kg) and LTA (6.70 mg/kg). Improved growth performance and feed utilization were observed in groups PG, LTA, PL1, and PL2, and the optimum growth performance was recorded in group PL1. Furthermore, improved serum alkaline phosphatase (AKP) activity and immunoglobulin M (IgM) and complement C3 (C3) contents were observed in all treatments, and the AKP activity in group PL1 was significantly superior to that of groups PG and LTA. Although PG and LTA alone or in combination exert comparable effects on intestinal microbiota and physical structure, obviously enhanced intestinal protease activity was observed in group PL1. The combined efficacy of PL1 could further potentiate the immune response by modulating the nucleotide-binding oligomerization domain-containing protein 2 (NOD2) and upregulating the expression of antimicrobial peptides (epinecidin-1, hepcidin-1, and β-defensin) as well as IgM. At the same time, group PL1 could further mitigate intestinal inflammation by downregulating pro-inflammatory cytokines and upregulating anti-inflammatory cytokines. In conclusion, probiotic B. pumilus SE5-derived PG and LTA mixture (10.65 mg/kg PG and 3.35 mg/kg LTA) exhibits better potential for improving the growth performance, intestinal health, and immune function compared to another mixture (21.30 mg/kg PG and 6.70 mg/kg LTA) and PG or LTA alone in grouper.

摘要

共生菌衍生的肽聚糖(PG)或脂磷壁酸(LTA)可改善鱼类的生长、免疫力和肠道健康,但尚不清楚这两种成分是否具有协同作用。为了阐明这一点,给石斑鱼(斜带石斑鱼)投喂基础饲料(CG)或含有1.0×10 CFU/g热灭活SE5(HIB)、PG(21.30 mg/kg)、LTA(6.70 mg/kg)、PG(10.65 mg/kg)和LTA(3.35 mg/kg)的混合物(PL1)以及PG(21.30 mg/kg)和LTA(6.70 mg/kg)的混合物(PL2)的饲料。在PG、LTA、PL1和PL2组中观察到生长性能和饲料利用率得到改善,PL1组记录到最佳生长性能。此外,在所有处理中均观察到血清碱性磷酸酶(AKP)活性、免疫球蛋白M(IgM)和补体C3(C3)含量升高,PL1组的AKP活性显著高于PG组和LTA组。虽然单独或组合使用PG和LTA对肠道微生物群和物理结构有类似影响,但PL1组观察到肠道蛋白酶活性明显增强。PL1的联合功效可通过调节含核苷酸结合寡聚化结构域蛋白2(NOD2)并上调抗菌肽(epinecidin-1、hepcidin-1和β-防御素)以及IgM的表达进一步增强免疫反应。同时,PL1组可通过下调促炎细胞因子和上调抗炎细胞因子进一步减轻肠道炎症。总之,与另一种混合物(21.30 mg/kg PG和6.70 mg/kg LTA)以及单独的PG或LTA相比,短小芽孢杆菌SE5衍生的PG和LTA混合物(10.65 mg/kg PG和3.35 mg/kg LTA)在改善石斑鱼生长性能、肠道健康和免疫功能方面表现出更好的潜力。

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本文引用的文献

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Microbiol Res. 2023 Oct;275:127449. doi: 10.1016/j.micres.2023.127449. Epub 2023 Jul 6.
2
Emerging issues in probiotic safety: 2023 perspectives.益生菌安全性的新问题:2023 年的观点。
Gut Microbes. 2023 Jan-Dec;15(1):2185034. doi: 10.1080/19490976.2023.2185034.
3
The International Scientific Association of Probiotics and Prebiotics (ISAPP) consensus statement on the definition and scope of postbiotics.
国际益生菌和益生元科学协会(ISAPP)关于后生元定义和范围的共识声明。
Nat Rev Gastroenterol Hepatol. 2021 Sep;18(9):649-667. doi: 10.1038/s41575-021-00440-6. Epub 2021 May 4.
4
Effect of on antioxidant enzyme activities in tomato grafting.[具体物质]对番茄嫁接中抗氧化酶活性的影响。 (原文中“Effect of on”中间缺少具体内容)
PeerJ. 2021 Mar 12;9:e10984. doi: 10.7717/peerj.10984. eCollection 2021.
5
Lipoteichoic acid from the cell wall of a heat killed Lactobacillus paracasei D3-5 ameliorates aging-related leaky gut, inflammation and improves physical and cognitive functions: from C. elegans to mice.细胞壁来源的脂磷壁酸减轻热灭活副干酪乳杆菌 D3-5 改善与衰老相关的肠漏、炎症并改善体力和认知功能:从秀丽隐杆线虫到小鼠。
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6
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9
Probiotics as Means of Diseases Control in Aquaculture, a Review of Current Knowledge and Future Perspectives.益生菌作为水产养殖疾病控制手段:当前知识与未来展望综述
Front Microbiol. 2018 Oct 12;9:2429. doi: 10.3389/fmicb.2018.02429. eCollection 2018.
10
Effects of dietary Lactobacillus rhamnosus JCM1136 and Lactococcus lactis subsp. lactis JCM5805 on the growth, intestinal microbiota, morphology, immune response and disease resistance of juvenile Nile tilapia, Oreochromis niloticus.鼠李糖乳杆菌 JCM1136 和乳球菌乳亚种 JCM5805 对幼年尼罗罗非鱼生长、肠道微生物群、形态、免疫反应和抗病性的影响。
Fish Shellfish Immunol. 2018 May;76:368-379. doi: 10.1016/j.fsi.2018.03.020. Epub 2018 Mar 14.