Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences, Linnean Center for Plant Biology, Uppsala, Sweden.
Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences, Linnean Center for Plant Biology, Uppsala, Sweden; Plant Virology Research Centre, College of Agriculture, Shiraz University, Iran.
Virology. 2019 Sep;535:111-121. doi: 10.1016/j.virol.2019.06.018. Epub 2019 Jul 1.
Previously, we investigated the evolution of Potato mop-top virus (PMTV) ORFs. Results indicate that positive selection acts exclusively on an ORF encoding the 8K protein, a weak viral suppressor of RNA silencing (VSR). However, how the extraordinary variability contributes to 8K-mediated RNA silencing suppression remains unknown. Here, we characterized the RNA silencing suppression activity of the 8K protein from seven diverse isolates. We show that 8K encoded by isolate P1 exhibits stronger RNA silencing suppression activity than the 8K protein from six other isolates. Mutational analyses revealed that Ser-50 is critical for these differences. By comparing small RNA profiles we found a lower abundance of siRNAs with U residue at the 5'-terminus after expression of the P1 8K compared to expression of 8K from isolate P125, an isolate with weak VSR activity. These results provide new clues as to the role of positive selection in shaping activities of VSRs.
此前,我们研究了马铃薯卷叶病毒(PMTV)ORFs 的进化。结果表明,正选择仅作用于编码 8K 蛋白的 ORF,8K 蛋白是一种弱的 RNA 沉默抑制子(VSR)。然而,这种非凡的变异性如何有助于 8K 介导的 RNA 沉默抑制仍不清楚。在这里,我们对来自七个不同分离株的 8K 蛋白的 RNA 沉默抑制活性进行了表征。我们表明,来自分离株 P1 的 8K 编码比来自其他六个分离株的 8K 蛋白具有更强的 RNA 沉默抑制活性。突变分析表明,Ser-50 对这些差异至关重要。通过比较小 RNA 图谱,我们发现与表达分离株 P125 的 8K 相比,表达 P1 8K 后具有 U 残基在 5'-末端的 siRNA 丰度较低,P125 是一种 VSR 活性较弱的分离株。这些结果为正选择在塑造 VSR 活性方面的作用提供了新的线索。