Biomedical Sciences Research Complex, School of Biology, North Haugh, University of St Andrews, St Andrews, Fife, KY16 9ST, Scotland, UK.
The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, Scotland, UK.
J Plant Physiol. 2022 Aug;275:153729. doi: 10.1016/j.jplph.2022.153729. Epub 2022 May 21.
The aims of this study were: i) to investigate mature plant resistance (MPR) against four strains of Potato virus Y (PVY, PVY, PVY and PVY) in potato cultivars that differ in maturity (e.g. early or maincrop) at different developmental stages, and ii) to determine whether phloem translocation of photoassimilates at different stages including the source-sink transition influences MPR. The data showed that MPR was functional by the flowering stage in all cultivars, and that the host-pathogen interaction is highly complex, with all three variables (potato cultivar, virus strain and developmental stage of infection) having a significant effect on the outcome. However, virus strain was the most important factor, and MPR was less effective in protecting tubers from recombinant virus strains (PVY and PVY). Development of MPR was unrelated to foliar phloem connectivity, which was observed at all developmental stages, but a switch from symplastic to apoplastic phloem unloading early in tuber development may be involved in the prevention of tuber infections with PVY. Recombinant virus strains were more infectious than parental strains and PVY has a more effective silencing suppressor than PVY, another factor that may contribute to the efficiency of MPR. The resistance conferred by MPR against PVY or PVY may be associated with or enhanced by the presence of the corresponding strain-specific HR resistance gene in the cultivar.
i)在不同成熟度(如早熟或主栽)的马铃薯品种中,在不同发育阶段,研究成熟植株抗性(MPR)对四种马铃薯 Y 病毒(PVY、PVY、PVY 和 PVY)菌株的抗性;ii)确定不同阶段包括源库转换时韧皮部同化物的转运是否影响 MPR。研究数据表明,在所有品种中,开花期时 MPR 已开始发挥作用,而且宿主-病原体的相互作用非常复杂,三个变量(马铃薯品种、病毒株系和感染的发育阶段)对结果都有显著影响。然而,病毒株系是最重要的因素,MPR 对保护块茎免受重组病毒株系(PVY 和 PVY)的效果较差。MPR 的发展与叶片韧皮部连通性无关,在所有发育阶段都观察到了韧皮部连通性,但在块茎发育早期,从共质体到质外体韧皮部卸载的转变可能与防止 PVY 感染块茎有关。重组病毒株系比亲本株系更具感染力,PVY 比 PVY 具有更有效的沉默抑制子,这可能也是 MPR 效率高的原因之一。MPR 对 PVY 或 PVY 赋予的抗性可能与品种中存在相应的、具有特定 HR 抗性的基因有关,或者是由其增强。