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首页> 外文期刊>Animal Nutrition >Lysine deficiency impaired growth performance and immune response and aggravated inflammatory response of the skin, spleen and head kidney in grown-up grass carp (Ctenopharyngodon idella)
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Lysine deficiency impaired growth performance and immune response and aggravated inflammatory response of the skin, spleen and head kidney in grown-up grass carp (Ctenopharyngodon idella)

机译:赖氨酸缺乏症的生长性能和免疫应答损害,并且在成年草鲤鱼中皮肤,脾脏和头肾的加重炎症反应(Ctenopharyncodon idella)

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This dissertation was primarily focused on the immune response, inflammatory response and molecular mechanisms in the skin, head kidney and spleen of grown-up grass carp ( Ctenopharyngodon idella ). Six iso-nitrogen diets differing in lysine concentrations (5.6, 8.5, 11.6, 14.4, 17.5 and 20.7?g/kg) were fed to 540 grass carp (164.85?±?0.79?g) for 60?d. After that, grass carp were challenged by Aeromonas hydrophila for 6?d. This study revealed that lysine deficiency (1) suppressed the growth performance of the fish and decreased their ability to resist skin lesion morbidity, (2) impaired the immune organ ' s immune response by decreasing the gene expressions of mucin, liver-expressed antimicrobial peptide ( LEAP )- 2B , β-defensin-1 and LEAP-2A and the production of antibacterial compounds of grown-up grass carp, and (3) aggravated the inflammatory response of immune organs in the fish by increasing the gene expressions of pro-inflammatory cytokines (interferon γ2 [ IFN-γ2 ], tumor necrosis factor α [ TNF-α ], interleukin [ IL ] -15 , IL-17D , IL-12p40 , IL-6 and IL-8 ) and down-regulating anti-inflammatory cytokines ( IL-11 , transforming growth factor β1 [ TGF-β1 ], IL-10 and IL-4/13A ), which were tightly correlated with signal transducer and activator of transcription (STAT)1 and STAT3 signaling pathway, respectively. The different phenomenon in the skin, spleen and head kidney of fish may be correlated with the difference in gene subtype. In addition, using quadratic regression analysis of percent weight gain (PWG), skin lesion morbidity, and the lysozyme activities in the spleen and head kidney, the dietary lysine requirements for grown-up grass carp were estimated to be 13.58, 13.51, 14.56 and 14.18?g/kg, respectively.
机译:本文主要集中在生长的草鲤鱼皮肤,头肾和脾脏中的免疫应答,炎症反应和分子机制(Ctenopharyngodon Idella)。将六种异氮饮食不同,赖氨酸浓度(5.6,8.5,11.6,14.4,17.5和20.7μl)送入540草鲤(164.85?±0.79×g)60℃。之后,Grass Carp被Aeromonas疏水菌挑战6?D.本研究表明,赖氨酸缺乏(1)抑制了鱼类的生长性能,降低了抗皮肤病变发病率的能力,(2)通过降低粘蛋白的基因表达,肝脏表达的抗微生物肽的基因表达损害了免疫器官的免疫应答(LEAP) - 2B,β-防御素-1和LEAP-2A和生长草鲤鱼的抗菌化合物的生产,并通过增加PRO-的基因表达,加剧了鱼类中免疫器官的炎症反应炎症细胞因子(干扰素γ2[IFN-γ2],肿瘤坏死因子α[TNF-α],白细胞介素[IL] -15,IL-17D,IL-12P40,IL-6和IL-8)和下调抗 - 炎症细胞因子(IL-11,转化生长因子β1[TGF-β1],IL-10和IL-4 / 13A),其分别与转录(统计)1和Stat3信号传导途径的信号传感器和活化剂密切相关。鱼类,脾脏和头肾的不同现象可能与基因亚型的差异相关。此外,使用二次回归分析重量增益(PWG),皮肤病变发病率和脾脏肾脏中的溶菌酶活性,估计成年草鲤鱼的膳食赖氨酸要求是13.58,13.51,14.56和分别为14.18?g / kg。

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