Chang Fei, Zou Wen-Chao, Gao Fang-Luan, Shen Jian-Guo, Zhan Jia-Sui
Key Laboratory of Plant Virology of Fujian Province, Institute of Plant Virology, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Inspection & Quarantine Technology Center, Fujian Exit-Entry Inspection and Quarantine Bureau, Fuzhou 350001, China.
Yi Chuan. 2015 Mar;37(3):292-301. doi: 10.16289/j.yczz.14-396.
Nucleotide sequences of P3 and pipo genes of Potato virus Y (PVY) from potato and tobacco were compared to investigate the effect of hosts on the population genetic structure. Meanwhile, mutation, natural selection and gene flow were evaluated to determine evolutionary forces responsible for the population genetic dynamics. The fixation indices of population differentiation (FST) of PVY from tobacco and potato were 0.116 and 0.120, respectively with significant difference, suggesting a moderate genetic differentiation between the two populations. Genetic variation analysis showed that nucleotide identities in P3 and pipo genes among the viral isolates from tobacco were respectively in the range of 85.2%-100% and 76.5%-100% while that from potato were respectively in the range of 95.7%-100% and 93.0%-100%, indicating higher genetic variation in PVY from tobacco than that from potato. Moreover, purifying selection was detected on the majority of polymorphic sites within P3 gene, suggesting that most of mutations in the gene were harmful and consequently being eliminated by natural selection. Conversely, positive selection was detected on two polymorphic sites, suggesting that these two mutations were beneficial to PVY. Neither purifying nor positive selection was detected in pipo gene, indicating neutral evolution of the gene. The values of gene flow (Nm) between PVY populations from tobacco and potato in P3 and pipo genes were 1.91 and 1.83, respectively, suggesting strong gene flow also contributes significantly to the population genetic dynamics of PVY population. In summary, this study indicates there was a significant genetic variation in PVY hosted by tobacco and potato, and mutation, natural selection and gene flow all contribute to the genetic diversity and population dynamic of the virus.
比较了来自马铃薯和烟草的马铃薯Y病毒(PVY)的P3和pipo基因的核苷酸序列,以研究宿主对群体遗传结构的影响。同时,评估了突变、自然选择和基因流,以确定导致群体遗传动态变化的进化驱动力。来自烟草和马铃薯的PVY群体分化固定指数(FST)分别为0.116和0.120,差异显著,表明两个群体之间存在中等程度的遗传分化。遗传变异分析表明,烟草病毒分离株中P3和pipo基因的核苷酸同一性分别在85.2%-100%和76.5%-100%范围内,而马铃薯病毒分离株中P3和pipo基因的核苷酸同一性分别在95.7%-100%和93.0%-100%范围内,表明烟草PVY的遗传变异高于马铃薯PVY。此外,在P3基因的大多数多态性位点上检测到纯化选择,这表明该基因中的大多数突变是有害的,因此被自然选择淘汰。相反,在两个多态性位点上检测到正选择,这表明这两个突变对PVY有益。在pipo基因中未检测到纯化选择和正选择,表明该基因呈中性进化。烟草和马铃薯PVY群体在P3和pipo基因中的基因流(Nm)值分别为1.91和1.83,表明强大的基因流也对PVY群体的群体遗传动态有显著贡献。总之,本研究表明,烟草和马铃薯中的PVY存在显著的遗传变异,突变、自然选择和基因流均对该病毒的遗传多样性和群体动态有贡献。