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首页> 外文期刊>Fish & Shellfish Immunology >Impaired intestinal immune barrier and physical barrier function by phosphorus deficiency: Regulation of TOR, NF-kappa B, MLCK, JNK and Nrf2 signalling in grass carp (Ctenopharyngodon idella) after infection with Aeromonas hydrophila
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Impaired intestinal immune barrier and physical barrier function by phosphorus deficiency: Regulation of TOR, NF-kappa B, MLCK, JNK and Nrf2 signalling in grass carp (Ctenopharyngodon idella) after infection with Aeromonas hydrophila

机译:含磷缺乏的肠道免疫屏障和物理屏障功能受损:在患有AeroMonas患者的感染后草鲤(Ctenopharyngodon Idella)中的Tor,NF-Kappa B,MLCK,JNK和NRF2信号传导的调节

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In aquaculture, the occurrence of enteritis has increased and dietary nutrition is considered as one of the major strategies to solve this problem. In the present study, we assume that dietary phosphorus might enhance intestinal immune barrier and physical barrier function to reduce the occurrence of enteritis in fish. To test this assumption, a total of 540 grass carp (Ctenophcuyngodon idella) were investigated by feeding graded levels of available phosphorus (0.95-8.75 g/kg diet) and then infection with Aeromonas hydrophila. The results firstly showed that phosphorus deficiency decreased the ability to combat enteritis, which might be related to the impairment of intestinal immune barrier and physical barrier function. Compared with optimal phosphorus level, phosphorus deficiency decreased fish intestinal antimicrobial substances activities or contents and down regulated antimicrobial peptides mRNA levels leading to the impairment of intestinal immune response. Phosphorus deficiency down-regulated fish intestinal anti-inflammatory cytokines mRNA levels and up-regulated the mRNA levels of pro-inflammatory cytokines [except IL-1 beta and IL-12p35 in distal intestine (DI) and IL-12p40] causing aggravated of intestinal inflammatory responses, which might be related to the signalling molecules target of rapamycin and nuclear factor kappa B. In addition, phosphorus deficiency disturbed fish intestinal tight junction function and induced cell apoptosis as well as oxidative damage leading to impaired of fish intestinal physical barrier function, which might be partially associated with the signalling molecules myosin light chain kinase, c-Jun N-terminal protein kinase and NF-E2-related factor 2, respectively. Finally, based on the ability to combat enteritis, dietary available phosphorus requirement for grass carp (254.56-898.23 g) was estimated to be 4.68 g/kg diet.
机译:在水产养殖中,肠炎的发生增加,饮食营养被认为是解决这个问题的主要策略之一。在本研究中,我们假设膳食磷可能会增强肠道免疫屏障和物理屏障功能,以减少鱼类中肠炎的发生。为了测试这一假设,通过喂养可用磷的分级水平(0.95-8.75g / kg饮食),然后用Aeromonas疏水液感染来研究总共540只草鲤(Ctetophcuyngodon idella)。结果首先表明,磷缺乏降低了对抗肠炎的能力,这可能与肠道免疫屏障和物理屏障功能的损害有关。与最佳磷水平相比,磷缺乏减少鱼类肠抗微生物物质活性或内容物和下调抗微生物肽mRNA水平,导致肠免疫应答的损害。磷缺乏下调鱼类肠抗炎细胞因子mRNA水平和上调促炎细胞因子的mRNA水平[除IL-1β和IL-12P35外,远端肠(DI)和IL-12P40]导致肠道加重炎症反应可能与雷帕霉素和核因子κB的信号传导分子靶标有关。此外,磷缺乏干扰鱼类肠密封函数和诱导细胞凋亡以及氧化损伤,导致鱼类肠道物理屏障功能损害,这可能与信号分子霉菌素轻链激酶,C-JUN N-末端蛋白激酶和NF-E2相关因子2部分相关联。最后,根据对抗肠炎的能力,估计草鲤鱼的膳食可用磷(254.56-898.23g)估计为4.68克/千克饮食。

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