Department of Plant Protection, Research Institute of Horticulture, Konstytucji 3 Maja 1/3, 96-100 Skierniewice, Poland.
Virus Res. 2011 Jun;158(1-2):263-7. doi: 10.1016/j.virusres.2011.03.003. Epub 2011 Mar 23.
The variability of the Apple stem pitting virus (ASPV) coat protein (CP) gene was investigated. The CP gene of ten virus isolates from apple and pear trees was sequenced. Comparison of all sequenced virus isolates revealed high diversity of the CP gene (70.7-93.5% at the nucleotide level and 77.8-98.7% at the amino acid level). Additionally, one or two deletions in the N-terminal part of the coat protein gene of the studied virus isolates were identified. The ratio of nonsynonymous to synonymous polymorphic sites indicated that purifying selection has acted to eliminate deleterious mutations in coding sites. Moreover, the evidences for recombination in analyzed sequences were provided. It is likely that recombination, along with selection, enhances the speed of elimination of deleterious mutations in ASPV, following the mutational deterministic hypothesis of Kondrashov.
研究了苹果茎痘病毒(ASPV)外壳蛋白(CP)基因的变异性。对来自苹果树和梨树的十个病毒分离株的 CP 基因进行了测序。对所有测序病毒分离株的比较显示 CP 基因高度多样化(核苷酸水平为 70.7-93.5%,氨基酸水平为 77.8-98.7%)。此外,在所研究的病毒分离株的外壳蛋白基因的 N 端部分鉴定出一个或两个缺失。非同义与同义多态性位点的比值表明,选择作用消除了编码位点的有害突变。此外,还提供了分析序列中重组的证据。可能是重组与选择一起,根据 Kondrashov 的突变决定论假说,加快了 ASPV 中有害突变的消除速度。