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Characterization, phylogeny and recombination analysis of Pedilanthus leaf curl virus-Petunia isolate and its associated betasatellite

机译:Pedilanthus叶片卷发病毒 - 喇叭肠分离物及其相关β牙盐的表征,系统发育和重组分析

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摘要

Abstract Background Geminiviruses cause major losses to several economically important crops. Pedilanthus leaf curl virus (PeLCV) is a pathogenic geminivirus that appeared in the last decade and is continuously increasing its host range in Pakistan and India. This study reports the identification and characterization of PeLCV-Petunia from ornamental plants in Pakistan, as well as geographical, phylogenetic, and recombination analysis. Methods Viral genomes and associated satellites were amplified, cloned, and sequenced from Petunia atkinsiana plants showing typical geminivirus infection symptoms. Virus-satellite complex was analyzed for phylogenetic and recombination pattern. Infectious clones of isolated virus and satellite molecules were constructed using a partial dimer strategy. Infectivity analysis of PeLCV alone and in combination with Digera yellow vein betasatellite (DiYVB) was performed by Agrobacterium infiltration of Nicotiana benthamiana and Petunia atkinsiana plants with infectious clones. Results PeLCV, in association with DiYVB, was identified as the cause of leaf curl disease on P. atkinsiana plants. Sequence analysis showed that the isolated PeLCV is 96–98% identical to PeLCV from soybean, and DiYVB has 91% identity to a betasatellite identified from rose. Infectivity analysis of PeLCV alone and in combination with DiYVB, performed by Agrobacterium infiltration of infectious clones in N. benthamiana and P. atkinsiana plants, resulted in mild and severe disease symptoms 14 days after infiltration, respectively, demonstrating that these viruses are natural disease-causing agents. Southern blot hybridization indicated successful replication of the virus-betasatellite complex in the infected plants. Phylogenetic analysis suggests that PeLCV originated from Pakistan and later spread to India. Recombination analysis predicted that PeLCV is a donor parent for recombination and evolution of two important begomoviruses, Papaya leaf curl virus (PaLCuV) and Radish leaf curl virus (RaLCuV). The molecular phylogeny of genes encoding coat protein (CP) and replication associated protein (Rep) depict a complex evolutionary pattern of the viruses, with wide diversity in both of the genes. Conclusions This study presents PeLCV and DiYVB as a new natural combination resulting in leaf curl disease on P. atkinsiana plants. Phylogenetic analysis, in addition to recent agricultural reports, identify PeLCV as an emerging broad host range Begomovirus that is resident in Pakistan and, more recently, has also spread to India. Recombination analysis showed that PeLCV was involved in a natural recombinational event leading to the evolution of two recombinant begomoviruses, RaLCuV and PaLCuV.
机译:摘要背景热性损失对几个经济上重要的作物引起重大损失。 Pedilanthus叶卷曲病毒(PELCV)是一种致病性Geminivirus,在过去十年中出现,不断增加其在巴基斯坦和印度的主机范围。该研究报告了巴基斯坦观赏植物的鉴定和表征Pelcv-Petunia,以及地理,系统发育和复合分析。方法从矮牵牛植物植物植物扩增,克隆和测序病毒基因组和相关卫星,显示出典型的Geminivirus感染症状。分析病毒卫星复合物用于系统发育和重组图案。使用部分二聚体策略构建分离的病毒和卫星分子的传染性克隆。单独的PELCV的感染性分析与Digera黄静脉贝替肽(DIYVB)组合通过尼古拉··斯坦氨基南亚和培养的克隆植物植物植物和PetoniaAtkinsiana植物进行。结果与DIYVB相关联的PELCV被鉴定为叶片卷曲植物叶卷曲疾病的原因。序列分析表明,分离的PelCV与大豆的PELCV相同96-98%,DIYVB对从玫瑰鉴定的甲状腺物具有91%的同一性。通过在Nenthamiana和P.Atkinsiana植物中的传染性克隆的农杆菌浸润的土壤渗透和DIYVB组合的感染性分析,渗透后14天导致了轻度和严重的疾病症状,表明这些病毒是天然疾病 - 引起代理人。 Southern印迹杂交表明感染植物中病毒-β卫星复合物的成功复制。系统发育分析表明,PELCV源自巴基斯坦,后来蔓延到印度。重组分析预测,PELCV是一种用于重组的供体父母,用于两种重要的原毛病毒,木瓜叶卷曲病毒(PALCUV)和萝卜叶卷曲病毒(RALCUV)。编码外壳蛋白(CP)和复制相关蛋白(REP)的基因的分子系统发生描绘的病毒进化复杂图案,具有在两个基因的广泛的多样性。结论本研究将PELCV和DIYVB作为一种新的自然组合,导致叶片卷曲植物植物。除了最近的农业报告外,系统发育分析,鉴定Pelcv作为居住在巴基斯坦的新兴广播罗马病毒,最近也蔓延到印度。重组分析表明,PELCV参与了一种自然的重组事件,导致两种重组前对缺血病毒,RALCUV和甘草的演变。

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