Division of Plant Sciences, School of Life Sciences, University of Dundee, Dundee, DD2 5DA, UK.
Cell and Molecular Sciences, The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, UK.
New Phytol. 2022 Aug;235(4):1599-1614. doi: 10.1111/nph.18184. Epub 2022 May 28.
Pathogens and pests secrete proteins (effectors) to interfere with plant immunity through modification of host target functions and disruption of immune signalling networks. The extent of convergence between pathogen and herbivorous insect virulence strategies is largely unexplored. We found that effectors from the oomycete pathogen, Phytophthora capsici, and the major aphid pest, Myzus persicae target the host immune regulator SIZ1, an E3 SUMO ligase. We used transient expression assays in Nicotiana benthamiana as well as Arabidopsis mutants to further characterize biological role of effector-SIZ1 interactions in planta. We show that the oomycete and aphid effector, which both contribute to virulence, feature different activities towards SIZ1. While M. persicae effector Mp64 increases SIZ1 protein levels in transient assays, P. capsici effector CRN83_152 enhances SIZ1-E3 SUMO ligase activity in vivo. SIZ1 contributes to host susceptibility to aphids and an oomycete pathogen. Knockout of SIZ1 in Arabidopsis decreased susceptibility to aphids, independent of SNC1, PAD4 and EDS1. Similarly SIZ1 knockdown in N. benthamiana led to reduced P. capsici infection. Our results suggest convergence of distinct pathogen and pest virulence strategies on an E3 SUMO ligase to enhance host susceptibility.
病原体和害虫通过修饰宿主靶标功能和破坏免疫信号网络来分泌蛋白质(效应物)以干扰植物免疫。病原体和草食性昆虫毒力策略之间的趋同程度在很大程度上尚未得到探索。我们发现,卵菌病原体辣椒疫霉和主要的蚜虫害虫烟粉虱的效应物针对宿主免疫调节剂 SIZ1,一种 E3 SUMO 连接酶。我们使用在本氏烟和拟南芥突变体中的瞬时表达测定来进一步研究效应物-SIZ1 相互作用在植物体内的生物学作用。我们表明,对毒力有贡献的卵菌和蚜虫效应物对 SIZ1 具有不同的活性。虽然烟粉虱效应物 Mp64 在瞬时测定中增加 SIZ1 蛋白水平,但辣椒疫霉效应物 CRN83_152 在体内增强 SIZ1-E3 SUMO 连接酶活性。SIZ1 有助于宿主对蚜虫和卵菌病原体的易感性。在拟南芥中敲除 SIZ1 可降低对蚜虫的易感性,而与 SNC1、PAD4 和 EDS1 无关。同样,在本氏烟中敲低 SIZ1 也会导致辣椒疫霉感染减少。我们的结果表明,不同的病原体和害虫毒力策略在 E3 SUMO 连接酶上趋同,以增强宿主的易感性。