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首页> 外文期刊>Fish & Shellfish Immunology >The crustin-like peptide plays opposite role in shrimp immune response to Vibrio alginolyticus and white spot syndrome virus (WSSV) infection
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The crustin-like peptide plays opposite role in shrimp immune response to Vibrio alginolyticus and white spot syndrome virus (WSSV) infection

机译:甲壳素样肽在虾免疫反应对弧菌alginyticus和白斑综合征病毒(WSSV)感染中起着相反的作用

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Crustin is an antimicrobial peptide (AMP) that plays a key role in.innate immunity of crustaceans. In this study, we cloned the entire 660 bp crustin-like sequence with a 507 bp open reading frame encoding a 168 amino acid from Marsupenaeus japonicus. The crustin-like gene was primarily expressed in gills and over-expressed in shrimp hemocytes after challenge with WSSV or Vibrio alginolyticus. After knockdown crustin-like gene using specific double-stranded RNA (CRU-dsRNA), IMD, Rab7, L-lectin, mitogenactivated protein kinase, p53, prophenoloxidase and Rho were down-regulated and nitric oxide synthase, myosin and tumor necrosis factor-alpha were up-regulated in hemocytes at 24 h post dsRNA treatment. After WSSV challenge, The mortality,, WSSV copy number and expressions of WSSV immediate early genes (IE1, 1E2, DNA polymerase, VP28) were both decreased but the apoptosis rate was increased in CRU-dsRNA-treated shrimps, indicating that WSSV may take advantage of crustin-like to benefit its replication. After silenced the crustin-like, the results of phagocytosis showed that the phagocytic rate of shrimp hemocytes on WSSV decreased significantly. In contrast, the absence of crustin-like in shrimps increased the mortality following V. alginolyticus challenge, indicating that crustin-like may play a positive role in the antibacterial process. The phagocytosis experiment showed there was a higher phagocytosis rate of hemocytes after CRU-dsRNA treatment. The result indicated that V alginolyticus may be able to use crustin-like to avoid phagocytosis of shrimp hemocytes. These results further added to our understanding of the function of crustin-like peptide and also provided its potential role in innate immunity in shrimp. (C) 2017 Elsevier Ltd. All rights reserved.
机译:甲壳菌是一种抗微生物肽(AMP),其在甲壳类动物的免疫力中起着关键作用。在这项研究中,我们用来自Marsupenaeus japonicus的168个氨基酸编码了507bp开放阅读框架,克隆了整个660bp甲壳菌样序列。甲壳素样基因主要用鳃表示,并在用WSSV或vibrio algolyticus攻击后在虾血细胞中过于表达。使用特异性双链RNA(CRU-DSRNA),IMD,RAB7,L凝集素,毫到递除的蛋白激酶,P53,PROHHENOLOXIC酶和RHO是下调和一氧化氮合酶,肌球蛋白和肿瘤坏死因子 - 在DSRNA治疗后24小时,α在血细胞中调节上调。在WSSV挑战之后,死亡率,WSSV拷贝数和WSSV立即早期基因(IE1,1E2,DNA聚合酶,VP28)的表达均降低,但在CRU-DSRNA治疗的虾中凋亡率增加,表明WSSV可能需要甲壳菌的优势是有益于其复制。沉默甲壳菌样后,吞噬作用的结果表明,WSSV上的虾血细胞的吞噬速率显着下降。相反,在虾氏虾中没有甲壳菌状的缺失增加了V.Alginolyticus挑战后的死亡率,表明甲壳素样可能在抗菌过程中起阳性作用。吞噬作用实验表明CRU-DSRNA治疗后血细胞的吞噬速度较高。结果表明,v alginolyticus可以能够使用甲蛋白样,以避免虾血细胞的吞噬症。这些结果进一步增加了我们对甲壳素样肽的功能的理解,并且还提供了其在虾中的先天免疫中的潜在作用。 (c)2017 Elsevier Ltd.保留所有权利。

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