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首页> 外文期刊>Fish & Shellfish Immunology >Identification and functional analysis of immune deficiency (IMD) from Scylla paramamosain: The first evidence of IMD signaling pathway involved in immune defense against bacterial infection in crab species
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Identification and functional analysis of immune deficiency (IMD) from Scylla paramamosain: The first evidence of IMD signaling pathway involved in immune defense against bacterial infection in crab species

机译:来自Scylla Paramamosain的免疫缺陷(IMD)的鉴定和功能分析:IMD信号通路的第一种证据表明,IMD信号通路涉及免疫防御对蟹种群的细菌感染

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Immune deficiency (IMD) pathway, one of the most essential pattern recognition receptor signaling pathways, plays vital roles in innate immune responses to eliminate pathogen infection in invertebrates. In the present study, an immune deficiency (IMD) gene and two NF-kappa B family members, Relish and Dorsal, were identified and characterized in mud crab Scylla paramamosain for the first time. The deduced SpIMD, SpRelish and SpDorsal protein contained conserved death domain and classical NF-kappa B domains, respectively. Phylogenetic analysis suggested that SpIMD was classified into the invertebrate IMD branch, and SpRelish could be classified into the type I NF-kappa B class while SpDorsal could be grouped into the type II NF-kappa B class. Tissue distribution results showed these three genes were ubiquitously expressed in all tested tissues. The expression patterns of IMD signaling pathway and NF-kappa B genes, including SpIMD, SpIKK beta, SpIKK epsilon, SpRelish and SpDorsal, were distinct when crabs were stimulated with Vibro alginolyticus, indicating that they might be involved in responding to bacterial infection. When SpIMD was silenced by in vivo RNA interference assay, the expression levels of IMD pathway and antimicrobial peptides (AMPs) genes, including SpIKK beta, SpRelish, SpALF1-6 and SpCrustin, were significantly down-regulated (p & 0.05). Correspondingly, the bacteria clearance ability of hemolymph was extremely impaired in IMD silenced crabs. Overall, the IMD played vital roles in innate immune response by regulating the expressions of its down-stream signaling genes and AMPs in S. paramamosain. These findings might pave the way for a better understanding of innate immune system and establish a fundamental network for the IMD signaling pathway in crustaceans.
机译:免疫缺陷(IMD)途径是最重要的模式识别受体信号传导途径之一,在先天免疫应答中起重要作用,以消除无脊椎动物中的病原体感染。在本研究中,鉴定了免疫缺陷(IMD)基因和两个NF-κB系列成员,依赖于泥蟹Scylla Paramamosain。推导出的纺锤,穿着三锭和孢子蛋白含有保守的死亡领域和古典NF-κB域。系统发育分析表明,刺溅被分类为无脊椎动物IMD分支,并且可以将微生物分类为I型NF-Kappa B级,而斯波拉尔可以被分组成II型NF-Kappa B类。组织分布结果表明,在所有测试组织中普遍地表达了这三种基因。 IMD信号通路和NF-Kappa B基因的表达模式,包括尖刺,尖刺β,尖峰ε,微小和痉挛,当用VIBRO algolyticus刺激螃蟹时,表明它们可能参与应对细菌感染。当通过体内RNA干扰测定静音时,IMD途径和抗微生物肽(AMPS)基因的表达水平显着下调(P& 0.05) 。相应地,IMD沉默的螃蟹中血淋巴的细菌间隙能力极为受损。总体而言,IMD通过在S. paramamosain的下游信号基因和AMPS的表达中调节其表达式,在先天免疫应答中发挥了重要作用。这些调查结果可能会为更好地理解先天免疫系统,为甲壳类动物的IMD信号通路建立一个基本网络。

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