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Analyses of Genotypic Diversity among North, South, and Central American Isolates of Sugarcane Yellow Leaf Virus: Evidence for Colombian Origins and for Intraspecific Spatial Phylogenetic Variation

机译:甘蔗黄叶病毒北美,南美和中美洲分离株之间的基因型多样性分析:哥伦比亚起源和种内空间系统发生变异的证据

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摘要

We have analyzed the genotypic diversity of Sugarcane yellow leaf virus (SCYLV) collected from North, South, and Central America by fingerprinting assays and selective cDNA cloning and sequencing. One group of isolates from Colombia, designated the C-population, has been identified as residing at the root node between a separable superpopulation structure of SCYLV and other members of the family Luteoviridae, indicating that the progenitor viruses of the North, South, and Central American isolates of the SCYLV superpopulation most likely arose from a C-population structure. From a model of intrafamilial evolution (F. Moonan et al., Virology 269:156–171, 2000), a prediction could be made that within the SCYLV species, the capacity of genomic sequence divergence would range from lowest in the capsid protein open reading frame 3 (ORF 3) to highest in a region spanning across the carboxy-terminal end of the RNA-dependent RNA polymerase ORF. We have demonstrated the validity and applicability of this intrafamilial model for the prediction of intraspecies SCYLV diversity. Analysis of spatial phylogenetic variation (SPV) within the SCYLV isolates could not be assessed by application of a “partial likelihoods assessed through optimization” (PLATO)-derived intraspecies model alone. However, application of a PLATO-derived intrafamilial model with the intraspecies-derived model allowed distinction of three forms of SPV. Two of the SPV forms identified correspond to the extremes in a continuum of sequence evolution displayed in a SCYLV superpopulation structure, and the third form was diagnostic of a C-population structure. The application of these types of models has value in terms of predicting the types of SCYLV intraspecies diversity that may exist worldwide, and in general, may be useful in application for more informed design of transgenes for use in the elicitation of homology-dependent virus resistance mechanisms in transgenic plants.
机译:我们已经通过指纹分析,选择性cDNA克隆和测序分析了从北美,南美和中美洲收集的甘蔗黄叶病毒(SCYLV)的基因型多样性。已经鉴定出一组来自哥伦比亚的分离株,称为C种群,居住在SCYLV的可分离超种群结构与黄体病毒科其他成员之间的根节点上,这表明北部,南部和中部的祖先病毒SCYLV超级种群的美国分离株很可能是由C种群结构引起的。从家族内进化模型(F. Moonan等人,Virology 269:156-171,2000)可以预测,在SCYLV物种内,基因组序列差异的能力将在衣壳蛋白开放的最低范围内变化。在跨越RNA依赖性RNA聚合酶ORF的羧基末端的区域中,阅读框3(ORF 3)最高。我们已经证明了该家族内模型对种内SCYLV多样性预测的有效性和适用性。无法单独使用“通过优化评估的部分可能性”(PLATO)衍生的物种内模型来评估SCYLV分离物中的空间系统发生变异(SPV)。但是,将PLATO衍生的家族内模型与种内衍生的模型一起使用可以区分三种形式的SPV。鉴定出的两种SPV形式对应于SCYLV超级种群结构中显示的连续序列进化的极端,而第三种形式是C种群结构的诊断。这些类型的模型的应用在预测可能在全球范围内存在的SCYLV物种内多样性的类型方面具有价值,并且一般而言,可用于应用更明智的转基因设计,以引发同源性依赖性病毒抗性转基因植物中的机制。

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