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首页> 外文期刊>Virology Journal >Characterization of an Egyptian Spodoptera littoralis nucleopolyhedrovirus and a possible use of a highly conserved region from polyhedrin gene for nucleopolyhedrovirus detection
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Characterization of an Egyptian Spodoptera littoralis nucleopolyhedrovirus and a possible use of a highly conserved region from polyhedrin gene for nucleopolyhedrovirus detection

机译:埃及斜纹夜蛾核多角体病毒的特征以及多角体蛋白基因高度保守的区域可能用于核多角体病毒的检测

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An Egyptian isolate of Spodoptera littoralis nucleopolyhedrovirus (SpliNPV) was tested for its potential as biocontrol agent in comparison to Autographa californica multiple nucleopolyhedrovirus (AcMNPV). Comparative assays of SpliNPV and AcMNPV against 2nd instar larvae of Spodoptera littoralis revealed 4-fold greater susceptibility of S. littoralis to AcMNPV than to SpliNPV based on LC50 values for the two viruses. The LT50s determined for SpliNPV and AcMNPV using LC50 of the virus against 2nd instar larvae were 4.2 and 5.8 days, respectively. A DNA segment of 405 bp containing highly conserved region from polyhedrin gene of SpliNPV (Polh-cr) was successfully amplified by PCR. Subsequently, this DNA segment was cloned and sequenced. Nucleotide sequence and its deduced amino acid sequence were compared to all available sequences in GenBank. Sequence alignment results revealed that Polh-cr showed significant similarities with 91 different baculovirus isolates. The percentage of homology ranged from 78% for Plusia orichalcea NPV to 99% for SpliNPV. This highly conserved region provides a candidate that could be used in easy, fast and economic prospective systems for virus detection as well as in biological control strategies.
机译:测试了埃及分离的斜纹夜蛾核多角体病毒(SpliNPV)作为生防菌剂的潜力,并将其与加州白纹夜蛾多核多角体病毒(AcMNPV)进行了比较。针对斜纹夜蛾第二龄幼虫的SpliNPV和AcMNPV的对比分析显示,基于LC 50 值,斜纹链球菌对AcMNPV的敏感性比对SpliNPV高四倍。两种病毒。使用该病毒的LC 50 针对第二龄幼虫的SpliNPV和AcMNPV确定的LT 50 分别为4.2天和5.8天。通过PCR成功地扩增了来自SpliNPV多角体蛋白基因(Polh-cr)的高度保守区域的405 bp DNA片段。随后,该DNA片段被克隆并测序。将核苷酸序列及其推导的氨基酸序列与GenBank中所有可用序列进行比较。序列比对结果显示,Polh-cr与91种不同的杆状病毒分离株具有显着相似性。同源性百分比范围从Plusia orichalcea NPV的78%到SpliNPV的99%。这个高度保守的区域提供了可以在简便,快速和经济的预期系统中用于病毒检测以及生物控制策略的候选对象。

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