Plant Breeding, Wageningen University & Research, Wageningen, The Netherlands.
Insect Sci. 2020 Apr;27(2):336-348. doi: 10.1111/1744-7917.12648. Epub 2018 Dec 6.
The green peach aphid, Myzus persicae, is one of the most threatening pests in pepper cultivation and growers would benefit from resistant varieties. Previously, we identified two Capsicum accessions as susceptible and three as resistant to M. persicae using an aphid population originating from the Netherlands (NL). Later on we identified an aphid population originating from a different geographical region (Switserland, SW) that was virulent on all tested Capsicum accessions. The objective of the current work is to describe in detail different aspects of the interaction between two aphid populations and two selected Capsicum accessions (one that was susceptible [PB2013046] and one that was resistant [PB2013071] to population NL), including biochemical processes involved. Electrical penetration graph (EPG) recordings showed similar feeding activities for both aphid populations on PB2013046. On accession PB2013071 the aphid population SW was able to devote significantly more time to phloem ingestion than population NL. We also studied plant defense response and found that plants of accession PB2013046 could not induce an accumulation of reactive oxygen species and callose formation after infestation with either aphid population. However, plants of PB2013071 induced a stronger defense response after infestation by population NL than after infestation by population SW. Based on these results, population SW of M. persicae seems to have overcome the resistance of PB2013071 that prevented feeding of aphids from NL population. The potential mechanism by which SW population overcomes the resistance is discussed.
烟粉虱是辣椒种植中最具威胁的害虫之一,种植者将受益于具有抗性的品种。此前,我们使用源自荷兰(NL)的蚜虫种群,鉴定出 2 个辣椒品种对烟粉虱敏感,3 个对烟粉虱具有抗性。后来,我们鉴定出一个源自不同地理区域(瑞士,SW)的蚜虫种群,对所有测试的辣椒品种都具有毒力。目前这项工作的目的是详细描述两个蚜虫种群和两个选定的辣椒品种(一个对 NL 种群敏感[PB2013046],一个对 NL 种群抗性[PB2013071])之间相互作用的不同方面,包括涉及的生化过程。电穿透图(EPG)记录显示,两个蚜虫种群在 PB2013046 上的取食活动相似。在 PB2013071 上,SW 种群能够比 NL 种群将更多的时间用于韧皮部取食。我们还研究了植物防御反应,发现受 NL 种群侵害的 PB2013046 植株不能诱导活性氧和胼胝质的积累,但受 NL 种群侵害的 PB2013071 植株能诱导更强的防御反应。基于这些结果,SW 种群的烟粉虱似乎已经克服了 PB2013071 的抗性,阻止了 NL 种群的烟粉虱取食。讨论了 SW 种群克服抗性的潜在机制。