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一种新的世界单分体伴随病毒引起厄瓜多尔和秘鲁番茄卷叶病的特征表明双生病毒进化出现了新方向。

Characterization of a new world monopartite begomovirus causing leaf curl disease of tomato in Ecuador and Peru reveals a new direction in geminivirus evolution.

机构信息

Department of Plant Pathology, University of California, Davis, Davis, California, USA.

出版信息

J Virol. 2013 May;87(10):5397-413. doi: 10.1128/JVI.00234-13. Epub 2013 Mar 6.

Abstract

All characterized whitefly-transmitted geminiviruses (begomoviruses) with origins in the New World (NW) have bipartite genomes composed of a DNA-A and DNA-B component. Recently, an NW begomovirus lacking a DNA-B component was associated with tomato leaf curl disease (ToLCD) in Peru, and it was named Tomato leaf deformation virus (ToLDeV). Here, we show that isolates of ToLDeV associated with ToLCD in Ecuador and Peru have a single, genetically diverse genomic DNA that is most closely related to DNA-A components of NW bipartite begomoviruses. Agroinoculation of multimeric clones of the genomic DNA of three ToLDeV genotypes (two variants and a strain) resulted in the development of tomato leaf curl symptoms indistinguishable from those of ToLCD in Ecuador and Peru. Biological properties of these ToLDeV genotypes were similar to those of Old World (OW) monopartite tomato-infecting begomoviruses, including lack of sap transmissibility, phloem limitation, a resistance phenotype in tomato germplasm with the Ty-1 gene, and functional properties of the V1 (capsid protein) and C4 genes. Differences in symptom phenotypes induced by the ToLDeV genotypes in tomato and Nicotiana benthamiana plants were associated with a highly divergent left intergenic region and C4 gene. Together, these results establish that ToLDeV is an emergent NW monopartite begomovirus that is causing ToLCD in Ecuador and Peru. This is the first report of an indigenous NW monopartite begomovirus, and evidence is presented that it emerged from the DNA-A component of a NW bipartite progenitor via convergent evolution and recombination.

摘要

所有具有新热带起源的已鉴定的烟粉虱传播的双生病毒(双生病毒)均具有由 DNA-A 和 DNA-B 两个组分组成的二分体基因组。最近,一种缺少 DNA-B 组分的新热带双生病毒与秘鲁的番茄曲叶病(ToLCD)有关,被命名为番茄叶片变形病毒(ToLDeV)。在此,我们表明与厄瓜多尔和秘鲁的 ToLCD 相关的 ToLDeV 分离物具有单一的、遗传上多样化的基因组 DNA,其与新热带二分体双生病毒的 DNA-A 组分最为密切相关。对三个 ToLDeV 基因型(两个变体和一个株系)的基因组 DNA 的多聚体克隆进行的农杆菌接种导致了番茄叶片卷曲症状的发展,与厄瓜多尔和秘鲁的 ToLCD 症状无法区分。这些 ToLDeV 基因型的生物学特性与旧世界(OW)单分体侵染番茄的双生病毒相似,包括缺乏汁液传染性、韧皮部局限性、在具有 Ty-1 基因的番茄种质中的抗性表型以及 V1(衣壳蛋白)和 C4 基因的功能特性。在番茄和本氏烟植物中由 ToLDeV 基因型诱导的症状表型差异与高度分化的左内含子区和 C4 基因有关。这些结果共同确立了 ToLDeV 是一种新兴的新热带单分体双生病毒,正在导致厄瓜多尔和秘鲁的 ToLCD。这是首例报道的本土新热带单分体双生病毒,并提供了证据表明它是通过趋同进化和重组从新热带二分体祖先的 DNA-A 组分中出现的。

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