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首页> 外文期刊>Indian Journal of Virology >Transcript Analysis of White spot syndrome virus Latency and Phagocytosis Activating Protein Genes in Infected Shrimp (Penaeus monodon)
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Transcript Analysis of White spot syndrome virus Latency and Phagocytosis Activating Protein Genes in Infected Shrimp (Penaeus monodon)

机译:感染虾(斑节对虾)中白斑综合症病毒潜伏期和吞噬激活蛋白基因的转录本分析

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摘要

Viral latency has been recently observed to be associated with White spot syndrome virus (WSSV) infection in shrimp. In the present study, shrimp samples (Penaeus monodon) surviving WSSV infection were examined for presence of WSSV in latent phase. Virus latency was observed in shrimp which were either experimentally challenged with WSSV and survived the infection or those which survived the natural infection. Three viral transcripts (ORFs 427, 151, 366) associated with latency were analyzed by real-time PCR. The shrimp surviving the natural WSSV infection on estimation with RT-PCR were found to have low grade of WSSV infection (less than 56 copies of WSSV). All the shrimp samples were RT-PCR negative for structural protein genes of WSSV, VP24 and VP28, indicating that these samples were harboring latent phase virus. RT-PCR of all the shrimp samples which survived WSSV infection revealed amplification of phagocytosis activating protein (PAP) gene (435 bp) with higher gene expression levels in experimentally challenged shrimp when compared to naturally infected shrimp. The expression of PAP in WSSV infected shrimp samples indicates its possible role in host response for resistance against WSSV infection. PAP was cloned and expressed as recombinant protein for protection studies. Shrimp were injected with three doses (5, 15 and 20 μg g−1 body weight) of recombinant PAP. Relative percent survival of 10 % was observed in shrimp immunized with the dose of 15 μg g−1 body weight of recombinant PAP. The expression of both WSSV latency associated and PAP genes obtained from shrimp surviving the WSSV infection, indicates the possible role of these genes in host–pathogen interaction.
机译:最近已观察到病毒潜伏期与虾白斑综合症病毒(WSSV)感染有关。在本研究中,检查了在WSSV感染后存活的虾样品(对虾),在潜伏期中是否存在WSSV。在虾中观察到病毒潜伏期,该虾要么通过实验受到WSSV攻击并在感染后存活,要么在自然感染后存活。通过实时PCR分析了与潜伏期有关的三个病毒转录本(ORF 427、151、366)。经RT-PCR估计存活了天然WSSV感染的虾被发现具有较低的WSSV感染等级(少于56份WSSV)。所有虾样品的WSSV,VP24和VP28的结构蛋白基因均为RT-PCR阴性,表明这些样品带有潜伏期病毒。经WSSV感染后存活的所有虾样品的RT-PCR显示,与天然感染的虾相比,经实验攻击的虾的吞噬激活蛋白(PAP)基因(435 bp)的扩增具有更高的基因表达水平。 WSSV感染的虾样品中PAP的表达表明其可能在宿主对WSSV感染的抗性中发挥作用。克隆了PAP,并表达为重组蛋白用于保护研究。虾注射了三种剂量(5、15和20μgg-1体重)的重组PAP。在以15μgg-1体重的重组PAP疫苗免疫的虾中,观察到相对存活率为10%。从存活于WSSV的虾中获得的WSSV潜伏期相关基因和PAP基因的表达表明这些基因在宿主与病原体相互作用中的可能作用。

著录项

  • 来源
    《Indian Journal of Virology》 |2012年第3期|p.333-343|共11页
  • 作者单位

    Genetics and Biotechnology Unit, Central Institute of Brackishwater Aquaculture, 75, Santhome High Road, R.A. Puram, Chennai, Tamil Nadu, India;

    Genetics and Biotechnology Unit, Central Institute of Brackishwater Aquaculture, 75, Santhome High Road, R.A. Puram, Chennai, Tamil Nadu, India;

    Genetics and Biotechnology Unit, Central Institute of Brackishwater Aquaculture, 75, Santhome High Road, R.A. Puram, Chennai, Tamil Nadu, India;

    Genetics and Biotechnology Unit, Central Institute of Brackishwater Aquaculture, 75, Santhome High Road, R.A. Puram, Chennai, Tamil Nadu, India;

    Genetics and Biotechnology Unit, Central Institute of Brackishwater Aquaculture, 75, Santhome High Road, R.A. Puram, Chennai, Tamil Nadu, India;

    Genetics and Biotechnology Unit, Central Institute of Brackishwater Aquaculture, 75, Santhome High Road, R.A. Puram, Chennai, Tamil Nadu, India;

    Genetics and Biotechnology Unit,;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    White spot syndrome virus; Penaeus monodon; Latency; Phagocytosis activating protein;

    机译:白斑综合症病毒;斑节对虾;潜伏期;吞噬作用激活蛋白;

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