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Characterization of white spot syndrome virus of penaeid shrimp: Genomic cloning and sequencing, structural protein analyzing and sequencing, genetic diversity, pathology and virulence.

机译:对虾白斑综合症病毒的特征:基因组克隆和测序,结构蛋白分析和测序,遗传多样性,病理和毒力。

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摘要

The purpose of this dissertation was to characterize virulence, genomic and protein composition of a newly emerged virus of penaeid shrimp: white spot syndrome virus (WSSV).; A partial genomic library, covering approximately 30–50% of the genome, of WSSV isolated from crayfish Orconectes punctimanus, was constructed by digesting viral DNA with endonuclease ClaI and cloning into the system pBluescript-JM109. Three viral inserts of approximately 2.2 kb, 2.8 kb and 6.3 kb, named as QW245, CR44, and QW237 respectively, were sequenced and analyzed.; Six geographic isolates of WSSV, from China, India, Thailand, South Carolina, Texas, as well as from crayfish obtained from the US National Zoo in Washington D.C. were compared by electron microscopy (TEM) and SDS-PAGE. All viral isolates contained three major polypeptides of 25, 23 and 19 kDa. A fourth major polypeptide at the 14.5 kDa position was observed in four of the viral isolates. The 19 kDa polypeptide of the crayfish WSSV appeared larger in size than that of the other isolates. Amino acid composition of four of the major structural polypeptides of the South Carolina WSSV was analyzed. The NH2 terminal amino acids of the 25, 23 and 14.5 kDa polypeptides of the SC WSSV were sequenced as MDLSFTLSVVTA, MEFGNLTNLDVA, and VARGGKTKGRRG, respectively.; The genomic composition of the six geographic isolates of WSSV were compared by combining the methods of restriction analysis using nine endonucleases AccI, BglII, ClaI, BamHI, EcoRI, HindII, HaeI, SacI, XhoI and Southern blot hybridization applying three digoxigenin-11-dUTP labeled WSSV genomic probes LN4, C42 and A6. No distinctive difference among five WSSV isolated from penaeid shrimp was detected; differences were observed in the crayfish isolate of WSSV.; The virulence of the six geographic isolates of WSSV were compared by per os challenge of Litopenaeus vannamei postlarvae and juveniles, and Farfantepenaeus duorarum juveniles. The Texas WSSV caused higher and more rapid mortalities; the crayfish WSSV caused lower and less rapid mortalities. L. vannamei postlarvae and juveniles were very susceptible to WSSV infection, while Fa. duorarum juveniles showed moderate resistance.
机译:本文的目的是表征一种新出现的对虾虾病毒:白斑综合症病毒(WSSV)的毒力,基因组和蛋白质组成。通过用核酸内切酶ClaI消化病毒DNA并将其克隆到pBluescript-JM109系统中,构建了部分基因组文库,该文库覆盖了从小龙虾(斜体)中分离的WSSV的大约30-50%的基因组。测序并分析了三个分别约为QB245,CR44和QW237的约2.2 kb,2.8 kb和6.3 kb的病毒插入片段。用电子显微镜(TEM)和SDS-PAGE比较了来自中国,印度,泰国,南卡罗来纳州,得克萨斯州以及从华盛顿特区美国国家动物园获得的小龙虾的六个WSSV地理分离株。所有病毒分离物均包含25、23和19 kDa的三种主要多肽。在四个病毒分离物中观察到位于14.5 kDa位置的第四种主要多肽。小龙虾WSSV的19 kDa多肽似乎比其他分离株的大小更大。分析了南卡罗莱纳州WSSV的四种主要结构多肽的氨基酸组成。 SC WSSV的25、23和14.5 kDa多肽的NH 2 末端氨基酸分别测序为MDLSFTLSVVTA,MEFGNLTNLDVA和VARGGKTKGRRG。通过结合限制性酶切分析方法,使用三种地高辛配基-11-dUTP,使用九种核酸内切酶AccI,BglII,ClaI,BamHI,EcoRI,HindII,HaeI,SacI,XhoI和Southern杂交杂交方法,比较了WSSV六个地理分离株的基因组组成。标记的WSSV基因组探针LN4,C42和A6。在从对虾中分离出的5种WSSV中未发现明显差异。 WSSV小龙虾分离物中观察到差异。通过南美白对虾幼虫和少年以及 Farfantepenaeus duorarum 少年的 per os 攻击,比较了六个WSSV地理分离株的毒力。得克萨斯州的WSSV造成的死亡率越来越高。小龙虾WSSV造成的死亡率越来越低。 <斜体> L。南美白对虾幼虫和幼虫对WSSV感染非常敏感,而对Fa则很敏感。 duorarum 少年表现出中等抵抗力。

著录项

  • 作者

    Wang, Qiong.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Agriculture Animal Pathology.; Agriculture Fisheries and Aquaculture.; Biology Microbiology.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 203 p.
  • 总页数 203
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物医学(兽医学);水产、渔业;微生物学;
  • 关键词

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