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Comparison of diagnostic techniques for the detection and differentiation of Cherry leaf roll virus strains for quarantine purposes

机译:用于检疫目的的樱桃卷叶病毒株检测和鉴别诊断技术的比较

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摘要

Some strains of Cherry leaf roll virus (CLRV) are considered as quarantine pests in New Zealand. CLRV was detected in seven plant host species: Actinidia chinensis, Hydrangea macrophylla, Malus domestica, Plantago major, Ribes rubrum, Rubus idaeus and Rumex sp. collected from New Zealand between 2005 and 2012. Biological, serological and molecular techniques were compared for the detection and differentiation of CLRV isolates. The biological analysis revealed differences in symptomatology and disease severity among the isolates. The five isolates tested by ELISA were serologically related to each other using polyclonal antisera with only one out of four commercially-available antisera successfully detecting all of them. The phylogenetic analysis of sequences obtained from parts of the coat protein, polymerase and 3'untranslated regions revealed that the New Zealand CLRV isolates clustered into two closely related but distinct phylogenetic groups with some isolates grouping differently depending on the gene studied. The New Zealand CLRV isolates were clearly distinct to overseas isolates found in phylogenetic groups A, D and E. The conventional RT-PCR using primers targeting the CLRV coat protein coding region is recommended for determining sequence differences between strains. These findings will be useful in making regulatory decisions with regard to the testing requirements and the CLRV strains to be regulated in New Zealand. (C) 2016 Elsevier B.V. All rights reserved.
机译:在新西兰,有些樱桃卷叶病毒(CLRV)菌株被视为检疫性害虫。在七个植物寄主物种中检测到了CLRV:中华猕猴桃,大绣球,大叶锦葵,车前草,大丁草,大叶红宝石和Rumex sp.。收集自2005年至2012年之间的新西兰。比较了生物学,血清学和分子技术对CLRV分离物的检测和区分。生物学分析揭示了分离物在症状和疾病严重程度方面的差异。使用多克隆抗血清,通过ELISA检测的五种分离物在血清学上相互关联,只有四分之一的市售抗血清成功检测了所有分离物。从外壳蛋白,聚合酶和3'非翻译区部分获得的序列的系统发育分析表明,新西兰CLRV分离株聚集成两个密切相关但截然不同的系统发育组,根据研究的基因,某些分离株的分组不同。新西兰CLRV分离株明显不同于A,D和E系统发生组中的海外分离株。建议使用靶向CLRV外壳蛋白编码区的引物进行常规RT-PCR,以确定菌株之间的序列差异。这些发现将有助于就检测要求和新西兰监管的CLRV菌株做出监管决策。 (C)2016 Elsevier B.V.保留所有权利。

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