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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Timing of transmission and the evolution of virulence of an insect virus
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Timing of transmission and the evolution of virulence of an insect virus

机译:昆虫病毒的传播时间和毒力的演变

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摘要

We used the nuclear polyhedrosis virus of the gypsy moth, Lymantria dispar, to investigate whether the timing of transmission influences the evolution of virulence. In theory, early transmission should favour rapid replication and increase virulence, while late transmission should favour slower replication and reduce virulence. We tested this prediction by subjecting one set of 10 virus lineages to early transmission (Early viruses) and another set to late transmission (Late viruses). Each lineage of virus underwent nine cycles of transmission. Virulence assays on these lineages indicated that viruses transmitted early were significantly more lethal than those transmitted late. Increased exploitation of the host appears to come at a cost, however. While Early viruses initially produced more progeny, Late viruses were ultimately more productive over the entire duration of the infection. These results illustrate fitness trade-offs associated with the evolution of virulence and indicate that milder viruses can obtain a numerical advantage when mild and harmful strains tend to infect separate hosts. [References: 31]
机译:我们使用吉卜赛蛾Lymantria dispar的核多角体病毒来研究传播的时机是否影响毒力的演变。从理论上讲,早期传播应有利于快速复制并增加毒力,而晚期传播应有利于缓慢复制并降低毒力。我们通过对一组10个病毒谱系进行早期传播(早期病毒),对另一组进行后期传播(晚期病毒)进行测试,从而测试了这一预测。每个病毒谱系都经历了九个传播周期。对这些谱系的毒力分析表明,早传播的病毒比晚传播的病毒更具致命性。然而,增加对主机的利用似乎是有代价的。早期病毒最初产生更多的后代,而晚期病毒最终在整个感染过程中生产力更高。这些结果说明了与毒力演变相关的适应性折衷,并表明当轻度和有害菌株倾向于感染单独的宿主时,轻度病毒可以获得数值优势。 [参考:31]

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