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黄连素通过调节肠道微生物群来调控大口黑鲈的葡萄糖代谢。

Berberine regulates glucose metabolism in largemouth bass by modulating intestinal microbiota.

作者信息

Xia Yun, Yang Hui-Ci, Zhang Kai, Tian Jing-Jing, Li Zhi-Fei, Yu Er-Meng, Li Hong-Yan, Gong Wang-Bao, Xie Wen-Ping, Wang Guang-Jun, Xie Jun

机构信息

Key Laboratory of Tropical and Subtropical Fishery Resource Application and Cultivation, Ministry of Agriculture, Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou, China.

Hainan Fisheries Innovation Research Institute, Chinese Academy of Fishery Sciences, Sanya, China.

出版信息

Front Physiol. 2023 Mar 9;14:1147001. doi: 10.3389/fphys.2023.1147001. eCollection 2023.

Abstract

This study examined the role of intestinal microbiota in berberine (BBR)-mediated glucose (GLU) metabolism regulation in largemouth bass. Four groups of largemouth bass (133.7 ± 1.43 g) were fed with control diet, BBR (1 g/kg feed) supplemented diet, antibiotic (ATB, 0.9 g/kg feed) supplemented diet and BBR + ATB (1g/kg feed +0.9 g/kg feed) supplemented diet for 50 days. BBR improved growth, decreased the hepatosomatic and visceral weight indices, significantly downregulated the serum total cholesterol and GLU levels, and significantly upregulated the serum total bile acid (TBA) levels. The hepatic hexokinase, pyruvate kinase, GLU-6-phosphatase and glutamic oxalacetic transaminase activities in the largemouth bass were significantly upregulated when compared with those in the control group. The ATB group exhibited significantly decreased final bodyweight, weight gain, specific growth rates and serum TBA levels, and significantly increased hepatosomatic and viscera weight indices, hepatic phosphoenolpyruvate carboxykinase, phosphofructokinase, and pyruvate carboxylase activities, and serum GLU levels. Meanwhile, the BBR + ATB group exhibited significantly decreased final weight, weight gain and specific growth rates, and TBA levels and significantly increased hepatosomatic and viscera weight indices and GLU levels. High-throughput sequencing revealed that compared with those in the control group, the Chao one index and Bacteroidota contents were significantly upregulated and the Firmicutes contents were downregulated in the BBR group. Additionally, the Shannon and Simpson indices and Bacteroidota levels were significantly downregulated, whereas the Firmicutes levels were significantly upregulated in ATB and BBR + ATB groups. The results of culture of intestinal microbiota revealed that BBR significantly increased the number of culturable bacteria. The characteristic bacterium in the BBR group was . Biochemical identification analysis revealed that metabolizes carbohydrates. The size and degree of vacuolation of the hepatocytes in the control, ATB, and ATB + BBR groups were higher than those in the BBR group. Additionally, BBR decreased the number of nuclei at the edges and the distribution of lipids in the liver tissue. Collectively, BBR reduced the blood GLU level and improved GLU metabolism in largemouth bass. Comparative analysis of experiments with ATB and BBR supplementation revealed that BBR regulated GLU metabolism in largemouth bass by modulating intestinal microbiota.

摘要

本研究探讨了肠道微生物群在黄连素(BBR)介导的大口黑鲈葡萄糖(GLU)代谢调控中的作用。将四组大口黑鲈(133.7±1.43克)分别投喂对照饲料、添加BBR(1克/千克饲料)的饲料、添加抗生素(ATB,0.9克/千克饲料)的饲料以及添加BBR+ATB(1克/千克饲料+0.9克/千克饲料)的饲料,持续50天。BBR促进了生长,降低了肝体指数和内脏重量指数,显著下调了血清总胆固醇和GLU水平,并显著上调了血清总胆汁酸(TBA)水平。与对照组相比,大口黑鲈肝脏中的己糖激酶、丙酮酸激酶、GLU-6-磷酸酶和谷氨酸草酰乙酸转氨酶活性显著上调。ATB组的终末体重、体重增加、特定生长率和血清TBA水平显著降低,肝体和内脏重量指数、肝脏磷酸烯醇式丙酮酸羧激酶、磷酸果糖激酶和丙酮酸羧化酶活性以及血清GLU水平显著升高。同时,BBR+ATB组的终末体重、体重增加和特定生长率以及TBA水平显著降低,肝体和内脏重量指数以及GLU水平显著升高。高通量测序显示,与对照组相比,BBR组的Chao1指数和拟杆菌门含量显著上调,厚壁菌门含量下调。此外,ATB组和BBR+ATB组的香农指数和辛普森指数以及拟杆菌门水平显著下调,而厚壁菌门水平显著上调。肠道微生物群培养结果显示,BBR显著增加了可培养细菌的数量。BBR组的特征菌为 。生化鉴定分析显示 可代谢碳水化合物。对照组、ATB组和ATB+BBR组肝细胞的大小和空泡化程度高于BBR组。此外,BBR减少了肝组织边缘细胞核的数量和脂质分布。总体而言,BBR降低了大口黑鲈的血糖水平,改善了其GLU代谢。补充ATB和BBR的实验对比分析表明,BBR通过调节肠道微生物群来调控大口黑鲈的GLU代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc1f/10033662/f61a9ab06b9e/fphys-14-1147001-g001.jpg

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