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首页> 外文期刊>Fish & Shellfish Immunology >Supplementation exogenous bile acid improved growth and intestinal immune function associated with NF-kappa B and TOR signalling pathways in on-growing grass carp (Ctenopharyngodon idella): Enhancement the effect of protein-sparing by dietary lipid
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Supplementation exogenous bile acid improved growth and intestinal immune function associated with NF-kappa B and TOR signalling pathways in on-growing grass carp (Ctenopharyngodon idella): Enhancement the effect of protein-sparing by dietary lipid

机译:补充外源胆汁酸改善了与NF-Kappa B的生长和肠道免疫功能,在生长的草鲤鱼中有关(Ctenopharyncodon idella):增强膳食脂质的蛋白质味道的效果

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摘要

This study investigated the effects of bile acid (BA) supplementation on growth performance, intestinal immune function and the mRNA expression of the related signalling molecules in on-growing grass carp (Ctenopharyngodon idella). A total of 540 healthy grass carp (mean weight 179.85 +/- 1.34 g) were fed a normal protein and lipid (NPNL) diet containing 29% crude protein (CP) and 5% ether extract (EE), and five low-protein and high-lipid (LPHL) diets (26% CP, 6% EE) with graded levels of BA (0-320 mg/kg diet) for 50 days. The fish were then challenged with Aeromonas hydrophila for 14 days. The results indicated that compared with the NPNL diet, the LPHL diet (unsupplemented BA) suppressed the growth performance, intestinal development and enteritis resistance capability and impaired the partial intestinal immune function of on-growing grass carp. Whereas in the LPHL diet, optimal BA supplementation significantly improved fish growth performance (percent weight gain, specific growth rate, feed intake and feed efficiency) and intestinal growth and function (intestine weight, intestine length and intestosomatic index), increased beneficial bacteria Lactobacillus and Bifidobacterium amounts, decreased harmful bacteria Aeromonas and Escherichia coli amounts, elevated lysozyme and acid phosphatase activities, increased complement (C3 and C4) and immunoglobulin M contents, and upregulated beta-defensin-1, hepcidin, liver expressed antimicrobial peptide 2A (LEAP-2A), LEAP-2B, Mucin2, interleukin 10 (IL-10), IL-11, transforming growth factor (TGF)-beta 1, TGF-beta 2, IL-4/13A (not IL-4/13B), TOR, S6K1 and inhibitor of kappa B alpha (I kappa B alpha) mRNA levels. In addition, optimal BA supplementation in the LPHL diet downregulated tumour necrosis factor alpha (TNF-alpha), interferon gamma 2 (IFN-gamma 2), IL-1 beta, IL-6, IL-8, IL-15, IL-17D, IL-12p35, IL-12p40 (rather than proximal intestine (PI) or mid intestine (MI), nuclear factor kappa B p65 (NF-kappa B p65) (except NF-kappa B p52), c-Rel, I kappa B kinase beta (IKK beta), IKK gamma (except IKK alpha), eIF4E-binding proteins (4E-BP)1 and 4E-BP2 mRNA levels in all three intestinal segments of on-growing grass carp (P 0.05). These findings suggest that BA supplementation in the LPHL diet improves growth and intestinal immune function of fish. Furthermore, 240 mg/kg BA supplementation in the LPHL diet was superior to the NPNL diet in improving growth and enhancing intestinal immune function of fish. Finally, based on percent weight gain, feed intake, protecting fish against enteritis, lysozyme activity in MI and acid phosphatase activity in distal intestine (DI), the optimal BA supplementation for on-growing grass carp were estimated to be 168.98, 170.23, 166.67, 176.50 and 191.97 mg/kg diet, respectively.
机译:本研究研究了胆汁酸(BA)补充对生长草鲤(Ctenopharyncodon Idella)中相关信号分子的生长性能,肠免疫功能和mRNA表达的影响。总共540只健康的草鲤(平均重量179.85 +/- 1.34g)喂养含有29%粗蛋白(Cp)和5%乙醚提取物(EE)和5个低蛋白质的正常蛋白质和脂质(NPN1)饮食和5%的低蛋白质和高脂(LPHL)饮食(26%CP,6%EE),分级水平的BA(0-320mg / kg饮食)50天。然后将鱼用Aeromonas疏水水攻击14天。结果表明,与NPNL饮食相比,LPHL饮食(未填充的BA)抑制了生长性能,肠道发育和肠炎抗性能力,并损害了生长的草鲤鱼的部分肠免疫功能。虽然在LPHL饮食中,最佳的BA补充显着提高了鱼类生长性能(重量增益,特异性生长速率,进料摄入和饲料效率)和肠生长和功能(肠体重,肠长,肠道指数),增加有益细菌乳酸杆菌和双歧杆菌量,减少有害细菌性气旋和大肠杆菌大肠杆菌量,溶菌酶升高,酸性磷酸酶活性,增加(C3和C4)和免疫球蛋白M含量,以及上调的β-防御蛋白-1,肝素,肝脏表达抗微生物肽2a(Leap-2a ),Leap-2b,mucin2,白细胞介素10(IL-10),IL-11,转化生长因子(TGF)-beta 1,TGF-β2,IL-4 / 13a(不是IL-4 / 13b),tor ,S6K1和KappaBα(IκBα)mRNA水平的抑制剂。此外,LPHL饮食中的最佳BA补充下调肿瘤坏死因子α(TNF-α),干扰素γ2(IFN-Gamma 2),IL-1β,IL-6,IL-8,IL-15,IL- 17D,IL-12P35,IL-12P40(而不是近端肠(PI)或MID肠(MI),核因子Kappa B P65(NF-Kappa B P65)(NF-Kappa B P52除外),C-Rel,i Kappa B激酶Beta(IKKβ),IKKγ(IKKα除外),EIF4E结合蛋白(4E-BP)1和4E-BP2 mRNA水平在生长的草鲤鱼的所有三个肠道中(P <0.05) 。这些发现表明,LPHL饮食中的BA补充改善了鱼的生长和肠免疫功能。此外,LPHL饮食中的240mg / kg BA补充剂在提高生长和增强鱼类的肠道免疫功能方面优于NPNL饮食。最后,基于重量增益百分比,进料摄入,保护鱼类免受肠炎,Mi和酸性磷酸酶活性在远端肠(DI)中的溶菌酶活性,最佳BA Supply估计,种植草鲤鱼的固定估计分别为168.98,170.23,166.67,176.50和191.97 mg / kg饮食。

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