Department of Plant Protection, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.
School of Life Sciences, University of Sussex, Brighton, United Kingdom.
PLoS Pathog. 2021 Sep 8;17(9):e1009917. doi: 10.1371/journal.ppat.1009917. eCollection 2021 Sep.
Host-pathogen interactions are central components of ecological networks where the MAPK signaling pathways act as central hubs of these complex interactions. We have previously shown that an insect hormone modulated MAPK signaling cascade participates as a general switch to trans-regulate differential expression of diverse midgut genes in the diamondback moth, Plutella xylostella (L.) to cope with the insecticidal action of Cry1Ac toxin, produced by the entomopathogenic bacterium Bacillus thuringiensis (Bt). The relationship between topology and functions of this four-tiered phosphorylation signaling cascade, however, is an uncharted territory. Here, we carried out a genome-wide characterization of all the MAPK orthologs in P. xylostella to define their phylogenetic relationships and to confirm their evolutionary conserved modules. Results from quantitative phosphoproteomic analyses, combined with functional validations studies using specific inhibitors and dsRNAs lead us to establish a MAPK "road map", where p38 and ERK MAPK signaling pathways, in large part, mount a resistance response against Bt toxins through regulating the differential expression of multiple Cry toxin receptors and their non-receptor paralogs in P. xylostella midgut. These data not only advance our understanding of host-pathogen interactions in agricultural pests, but also inform the future development of biopesticides that could suppress Cry resistance phenotypes.
宿主-病原体相互作用是生态网络的核心组成部分,其中 MAPK 信号通路作为这些复杂相互作用的中心枢纽。我们之前已经表明,昆虫激素调节的 MAPK 信号级联反应作为一个通用开关,参与调控小菜蛾肠道中不同基因的差异表达,以应对由昆虫病原细菌苏云金芽孢杆菌(Bt)产生的 Cry1Ac 毒素的杀虫作用。然而,这个四级磷酸化信号级联反应的拓扑结构和功能之间的关系是一个未知的领域。在这里,我们对小菜蛾所有的 MAPK 直系同源物进行了全基因组特征描述,以确定它们的系统发育关系,并证实它们的进化保守模块。定量磷酸蛋白质组学分析的结果,结合使用特异性抑制剂和 dsRNA 的功能验证研究,使我们建立了一个 MAPK“路线图”,其中 p38 和 ERK MAPK 信号通路在很大程度上通过调节小菜蛾肠道中多个 Cry 毒素受体及其非受体旁系同源物的差异表达来对抗 Bt 毒素,从而产生抗性反应。这些数据不仅增进了我们对农业害虫宿主-病原体相互作用的理解,也为未来开发能够抑制 Cry 抗性表型的生物农药提供了信息。