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兔出血症病毒的鉴定及其系统发育分析 被引量:3

Identification of Rabbit Hemorrhagic Disease Virus and Phylogenetic Analysis
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摘要 为确定临床家兔的死亡病因并对其病原进行研究分析,本试验通过临床症状、剖检变化和RT-PCR技术以及HA-HI试验对一起家兔的慢性死亡进行了诊断。结果表明:为兔出血症病毒感染引起的兔瘟,然后设计引物对该病毒的唯一结构蛋白VP60衣壳蛋白的全基因序列进行了RT-PCR扩增、测序和比对分析;结果显示:引起本次家兔死亡的兔出血症病毒的VP60长度与其他已知毒株一致,也是由1740个碱基组成,与已发表毒株的VP60的同源性达90%以上;在系统进化上与俄罗斯2009年的一个流行毒株同源性最高(98.1%)。本试验研究结果表明:本次引起非典型兔瘟的兔出血症病毒仍然具有较高的保守性,但病毒的结构蛋白也发生了一些小的变异,这些变异成为基因亚群划分的依据。 In order to determine and analyze the pathogeny of the clinical rabbits dying after natural infection, diagnosis was done to the rabbits by clinical symptoms, pathological changes and RT-PCR technology, as well as HA-HI test in this experiment. The results showed that the pathogen was Rabbit Hemorrhagic Disease Virus (RHDV). Then the complete sequence of capsid protein, VP60, which was the only structural protein of RHDV was amplified by RT-PCR with specific primers and amplification products were directly sequenced, assembled and analyzed. The results showed that the sequence of VP60 of RHDV isolated consisted of 1740 nucleotides just like other known strains. Phylogenetieally, the sequence shared homology of more than 90% with worldwide isolates among RHDV strains and the highest homology of 98.1% with an isolate from Russia of 2009. From the study, we could saw that the virus isolated from untypical rabbit plague still had high conservation. However, there were also some minor variations in the structural protein, which was the basis of the classification of gene groups.
出处 《中国农学通报》 CSCD 2012年第32期78-83,共6页 Chinese Agricultural Science Bulletin
关键词 兔出血症病毒 VP60衣壳蛋白 RT-PCR HA-HI试验 Rabbit Hemorrhagic Disease Virus (RHDV) VP60 Capsid Protein RT-PCR HA-HI Test
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  • 1雷爱莹,彭敏,曾地刚,李咏梅.枯草芽孢杆菌的分离和净化水质的研究[J].广西农业科学,2005,36(3):248-250. 被引量:24
  • 2刘胜江 薛华平 等.兔的一种新病毒病-兔病毒性出血症[J].畜牧与兽医,1984,16(6):253-255.
  • 3R E 布坎南,N E 吉本斯.伯杰细菌鉴定手册[M].8版.北京:科学出版社,1984:274-297.
  • 4奥斯伯,布伦特,穆尔,等.精编分子生物学实验指南[M].5版.北京:科学出版社,2008.
  • 5王振华,潘康成.不同浓度中药对枯草芽孢杆菌体外生长的影响[J].中国兽医杂志,2007,43(10):44-45. 被引量:7
  • 6Hu Q P, Xu J G, Song P, et al. Isolation and identification of a potential biocontrol agent Bacillus subtilis QM 3 from Qinghai yak dung in China [J]. World Journal of Microbiology & Biotechnology, 2008,24( 11 ): 2451 - 2458.
  • 7McLaughlin S D, Walker A W, Churcher C, et al. The bacteriology of pouchitis., a molecular phylogenetic analysis using 16S rRNA gene cloning and sequencing [J]. Ann Surg, 2010, 252( 1 ): 90-98.
  • 8Hukowska-Szematowicz B, Tokarz-Deptut:a B, Deptula W. Genetic variation and phylogenetic analysis of rabbit haemor rhagie disease virus (RHDV) strains[J]. Aeta Biochim Pol 2012, 59(4): 459- 465.
  • 9Oem J K, Lee K N, Roh I S, et al. Identification and charac- terization of rabbit hemorrhagic disease virus genetic variants i- solated in Korea[J]. J Vet Med Sci, 2009, 71(11):1 519- 1 523.
  • 10Ire Gall-Recule G, Zwingelstein F, Boucher S, et al. Detection of a new variant of rabbit haemorrhagic disease virus in France [J]. Vet Ree, 2011, 168(5):137-138.

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