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幼龄大口黑鲈肠道菌群及其对不同粘性饲料免疫应答的影响。

Intestinal flora and immunity response to different viscous diets in juvenile largemouth bass, Micropterus salmoides.

机构信息

College of Fisheries, Guangdong Ocean University, Zhanjiang, 524088, China; Aquatic Animals Precision Nutrition and High Efficiency Feed Engineering Research Centre of Guangdong Province, Zhanjiang, 524088, China; Key Laboratory of Aquatic, Livestock and Poultry Feed Science and Technology in South China, Ministry of Agriculture, Zhanjiang, 524088, China.

College of Fisheries, Guangdong Ocean University, Zhanjiang, 524088, China; Aquatic Animals Precision Nutrition and High Efficiency Feed Engineering Research Centre of Guangdong Province, Zhanjiang, 524088, China; Key Laboratory of Aquatic, Livestock and Poultry Feed Science and Technology in South China, Ministry of Agriculture, Zhanjiang, 524088, China.

出版信息

Fish Shellfish Immunol. 2022 Aug;127:1012-1023. doi: 10.1016/j.fsi.2022.06.054. Epub 2022 Jul 19.

DOI:10.1016/j.fsi.2022.06.054
PMID:35863540
Abstract

An 8-weeks feeding trial was conducted to estimate the effects of different viscous cellulose on the intestinal flora and health in juvenile largemouth bass (Micropterus salmoides). Four isoproteic and isolipidic experimental diets were formulated (crude protein 42.50%, crude lipid 13.70%) to contain 8% cellulose (control group; 5.14 mPa s), 8% low viscous carboxymethyl cellulose (CMC) with 800 mPa s (Lvs-CMC group; 182.15 mPa s), 8% middle viscous CMC with 2000 mPa s (Mvs-CMC group; 320.48 mPa s) and 8% high viscous CMC with 5000 mPa s (Hvs-CMC group; 440.65 mPa s), respectively. The weight gain rate, specific growth rate, protein efficiency ratio, protein and lipid deposition rate in the CMC groups were dramatically lower than those in the control group, while feed conversion rate showed an opposite result. Plasma diamine oxidase activity, endothelin-1 and lipopolysaccharide concentrations in the Mvs-CMC and Hvs-CMC groups were significantly higher than in the control group, accompanied by a significant down-regulation of Occludin, Caludin-1 and Caludin-4. Intestinal glutathione concentration, superoxide dismutase and catalase activities in the CMC groups were significantly lower than in the control group, accompanied by a significant up-regulation of Keap1 and down-regulation of Nrf2. Moreover, CMC diets dramatically down-regulated the expression levels of IL-10 and TGF-β1. Digesta total short chain fatty acid and acetate concentrations in the CMC groups were dramatically higher than in the control group, while butyrate concentration showed an opposite result. The OTU, Sobs, Shannon and Simpson indices of intestinal flora in the CMC groups were dramatically lower than in the control group. Notably, structural analysis showed that dietary CMC dramatically increased the abundance of C. somerae and P. shigelloides, but reduced the abundance of C. colicanis and C. perfringens. In summary, increasing dietary viscosity adversely affects the intestinal flora structure and diversity, increases acetate/butyrate-producing bacterial ratio and the abundance of pathogenic microorganisms, disrupting intestinal flora homeostasis, impairs mucosa barrier function, induces intestinal inflammation and epithelial cell apoptosis in juvenile largemouth bass. Our findings demonstrate that soluble cellulose is more detrimental to intestinal health and growth in juvenile largemouth bass compared to insoluble cellulose, and the adverse effects of soluble cellulose are mainly caused by its viscosity. Importantly, this study demonstrate that viscosity is the main characteristic of non-starch polysaccharides that are detrimental to the intestinal health of fish.

摘要

进行了为期 8 周的饲养试验,以估计不同粘性纤维素对幼期大口黑鲈(Micropterus salmoides)肠道菌群和健康的影响。设计了四种等蛋白等脂的实验饲料(粗蛋白 42.50%,粗脂肪 13.70%),分别含有 8%纤维素(对照组;5.14 mPa·s)、8%低粘性羧甲基纤维素(CMC)(Lvs-CMC 组;182.15 mPa·s)、8%中粘性 CMC(Mvs-CMC 组;320.48 mPa·s)和 8%高粘性 CMC(Hvs-CMC 组;440.65 mPa·s)。在 CMC 组中,增重率、特定生长率、蛋白质效率比、蛋白质和脂质沉积率显著低于对照组,而饲料转化率则呈现相反的结果。与对照组相比,Mvs-CMC 和 Hvs-CMC 组的血浆二胺氧化酶活性、内皮素-1 和脂多糖浓度显著升高,同时紧密连接蛋白 Occludin、Caludin-1 和 Caludin-4 的表达显著下调。与对照组相比,在 CMC 组中,肠道谷胱甘肽浓度、超氧化物歧化酶和过氧化氢酶活性显著降低,Keap1 表达上调,Nrf2 表达下调。此外,CMC 饲料显著下调了 IL-10 和 TGF-β1 的表达水平。与对照组相比,在 CMC 组中,肠道总短链脂肪酸和乙酸浓度显著升高,而丁酸浓度则相反。与对照组相比,在 CMC 组中,肠道菌群的 OTU、Sobs、Shannon 和 Simpson 指数显著降低。值得注意的是,结构分析表明,膳食 CMC 显著增加了 C. somerae 和 P. shigelloides 的丰度,但降低了 C. colicanis 和 C. perfringens 的丰度。总之,增加膳食粘性会对幼期大口黑鲈的肠道菌群结构和多样性产生不利影响,增加乙酸/丁酸产生菌的比例和致病微生物的丰度,破坏肠道菌群的稳态,损害黏膜屏障功能,诱导肠道炎症和上皮细胞凋亡。本研究表明,与不溶性纤维素相比,可溶性纤维素对幼期大口黑鲈的肠道健康和生长更为不利,而可溶性纤维素的不利影响主要与其粘性有关。重要的是,本研究表明,粘性是不利于鱼类肠道健康的非淀粉多糖的主要特征。

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