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Genetic bottlenecks during systemic movement of Cucumber mosaic virus vary in different host plants.

机译:黄瓜花叶病毒系统运动期间的遗传瓶颈在不同寄主植物中有所不同。

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摘要

Genetic bottlenecks are stochastic events that narrow variation in a population. We compared bottlenecks during the systemic infection of Cucumber mosaic virus (CMV) in four host plants. We mechanically inoculated an artificial population of twelve CMV mutants to young leaves of tomato, pepper, Nicotiana benthamiana, and squash. The inoculated leaves and primary and secondary systemically infected leaves were sampled at 2, 10, and 15 days post-inoculation. All twelve mutants were detected in all of the inoculated leaves. The number of mutants recovered from the systemically infected leaves of all host species was reduced significantly, indicating bottlenecks in systemic movement. The recovery frequencies of a few of the mutants were significantly different in each host probably due to host-specific selective forces. These results have implications for the differences in virus population variation that is seen in different host plants.
机译:遗传瓶颈是随机事件,可缩小群体中的变异。我们比较了四种寄主植物中黄瓜花叶病毒(CMV)全身感染期间的瓶颈。我们将十二种CMV突变体的人工种群机械接种到了番茄,胡椒,本特烟草和南瓜的幼叶上。在接种后第2、10和15天对接种的叶子以及初级和次级全身性感染的叶子取样。在所有接种的叶片中检测到所有十二种突变体。从所有宿主物种的系统感染叶片中回收的突变体数量显着减少,表明系统运动出现瓶颈。在每个宿主中,一些突变体的恢复频率明显不同,这可能是由于宿主特异性的选择力所致。这些结果暗示了在不同宿主植物中病毒种群变异的差异。

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