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首页> 外文期刊>Plant Disease >A New Pathotype of Pepper mild mottle virus (PMMoV) Overcomes the Lu4 Resistance Genotype of Pepper Cultivars
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A New Pathotype of Pepper mild mottle virus (PMMoV) Overcomes the Lu4 Resistance Genotype of Pepper Cultivars

机译:辣椒轻斑驳病毒(PMMoV)的新病态克服了辣椒品种的Lu4抗性基因型。

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摘要

The biological, serological, and molecular characteristics of a newly isolated iLu4 resistance-breaking isolate of Pepper mild mottle virus (PMMoV) were studied. The new pathotype of PMMoV is closely related to the Israeli pathotypes Pd1,2 and Pd1,2,3 of the virus; however, the mosaic symptoms caused by this new pathotype on pepper plants with an iLu4 genotype were more severe than the mild mosaic symptoms caused by other common pathotypes of the virus in susceptible plants. The predicted amino acid sequence of the putative coat protein (CP) of the newly described pathotype has two amino acid mismatches when compared with the CP of pathotype Pd1,2, leucine to glutamine at position 47, and alanine to glycine at position 87. The CP of the new pathotype has one amino acid mismatch when compared with Pd1,2,3,having alanine instead of glycine at position 87. Based on its biological characteristics, the new pathotype was designated Pd1,2,3,4 of PMMoV-Is. A method is described for the differentiation among the three PMMoV pathotypes using restriction cleavage analysis of reverse-transcription polymerase chain reaction products made from virus-infected plants. An additional unique MnlI site in the CP gene of the newly isolated Pd1,2,3,4 allows its distinction from the other two isolates, while BglI cleaved only products of the Pd1,2 pathotype.
机译:研究了新分离的辣椒轻斑驳病毒(PMMoV)的iLu4抗性断裂菌株的生物学,血清学和分子特征。 PMMoV的新病理型与以色列的病毒Pd1,2和Pd1,2,3型密切相关。但是,由这种新的病态型引起的带有iLu4基因型的辣椒植物上的花叶症状要比易感植物中病毒的其他常见病态所引起的轻度花叶症状更为严重。与致病型Pd1,2的CP相比,新描述的致病型的外壳蛋白(CP)的预测氨基酸序列具有两个氨基酸错配,第47位为亮氨酸至谷氨酰胺,第87位为丙氨酸至甘氨酸。与Pd1,2,3相比,新病理型的CP具有一个氨基酸错配,在第87位具有丙氨酸而不是甘氨酸。基于其生物学特性,新病理型被指定为PMMoV-Is的Pd1,2,3,4 。描述了一种通过对病毒感染植物制成的逆转录聚合酶链反应产物进行限制性酶切分析来区分三种PMMoV病态的方法。新分离的Pd1,2,3,4的CP基因中另外一个独特的MnlI位点可使其与其他两个分离株区分开,而BglI仅裂解了Pd1,2病理型的产物。

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