首页> 外文期刊>Fish & Shellfish Immunology >A novel effect of imidazole derivative KK-42 on increasing survival of Aeromonas hydrophila challenged prawn Macrobrachium nipponense.
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A novel effect of imidazole derivative KK-42 on increasing survival of Aeromonas hydrophila challenged prawn Macrobrachium nipponense.

机译:咪唑衍生物KK-42对嗜水气单胞菌挑战大虾日本沼虾的存活率增加的新作用。

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Imidazole derivative KK-42 is well known as the insect growth regulator. Here we find that KK-42 pretreatment could promote the survival of Macrobrachium nipponense infected with Aeromonas hydrophila, which is considered to be possibly related to the prophenoloxidase (proPO), a conserved copper-containing enzyme that plays an important role in defense against pathogens. In this study, a full-length of proPO gene from M. nipponense haemocytes, designated as MnproPO, was firstly cloned and characterized. The full-length cDNA contained 2428 bp with a 2013 bp open reading frame encoding a putative proPO protein of 671 amino acids with a predicted molecular mass of 76.5 kDa and pI of 7.31. It was predicted to possess all the expected features of proPO members, including two putative copper-binding sites with six histidine residues and a thiol ester-like motif. Sequence analysis showed that MnproPO exhibited the highest amino acid sequence similarity (93%) to a proPO of Macrobrachium rosenbergii. The gene was expressed highly in haemocytes and weakly in hepatopancreas. Real-time PCR analysis revealed that the MnproPO expression increased significantly at 3, 12 and 24 h after KK-42 treatment, the PO activity also importantly rose from 6 to 48 h in KK-42-treated prawns and reached the maximum at 24 h with a 2.3-fold higher than that in control group. Injection of A. hydrophila could stimulate the MnproPO transcription and PO activity whether or not the prawns were pretreated by KK-42, the mRNA level increased obviously only at 3 h and 6 h after the bacterium injection (challenged control), but increased constantly during the phase of experiment except at 6 h under the condition of KK-42 pretreatment (challenged treatment group). The change trend of PO activity was basically similar to that of MnproPO expression. Our present results demonstrate that the MnproPO expression as well as PO activity may be induced by KK-42, which is likely one of the molecular mechanisms of KK-42 acts for increasing survival of the prawn infected with A. hydrophila.
机译:咪唑衍生物KK-42是众所周知的昆虫生长调节剂。在这里,我们发现KK-42预处理可以促进被嗜水气单胞菌感染的日本沼虾的存活,这被认为可能与原酚氧化酶(proPO)有关,后者是一种保守的含铜酶,在防御病原体中起重要作用。在这项研究中,首先克隆并鉴定了来自日本分枝杆菌血细胞的全长proPO基因,命名为MnproPO。全长cDNA包含2428 bp,带有2013 bp的开放阅读框,编码一个671个氨基酸的推定proPO蛋白,预测分子量为76.5 kDa,pI为7.31。预计它具有proPO成员的所有预期特征,包括两个带有六个组氨酸残基和硫醇酯样基序的推定铜结合位点。序列分析表明,MnproPO与罗氏沼虾的proPO表现出最高的氨基酸序列相似性(93%)。该基因在血细胞中高表达,在肝胰腺中低表达。实时PCR分析显示,在KK-42处理后的3、12和24 h MnproPO表达显着增加,PO活性在KK-42处理的对虾中的重要活性也从6 h增加到48 h,并在24 h达到最大值比对照组高2.3倍。不论是否用KK-42预处理,注射嗜水链球菌均可刺激MnproPO转录和PO活性,仅在细菌注射后3h和6h显着增加mRNA水平(挑战对照),但在注射过程中不断增加。除了在KK-42预处理的条件下(挑战治疗组)在6 h以外的实验阶段。 PO活性的变化趋势与MnproPO表达基本相似。我们目前的结果表明,MnproPO的表达以及PO的活性可能由KK-42诱导,这很可能是KK-42的分子机制之一,可以提高被嗜水链球菌感染的虾的存活率。

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