Haeger Wiebke, Wielsch Natalie, Shin Na Ra, Gebauer-Jung Steffi, Pauchet Yannick, Kirsch Roy
Department of Entomology, Max Planck Institute for Chemical Ecology, Jena, Germany.
Mass Spectrometry Research Group, Max Planck Institute for Chemical Ecology, Jena, Germany.
Front Plant Sci. 2021 Jun 4;12:660430. doi: 10.3389/fpls.2021.660430. eCollection 2021.
Plants possess various defense strategies to counter attacks from microorganisms or herbivores. For example, plants reduce the cell-wall-macerating activity of pathogen- or insect-derived polygalacturonases (PGs) by expressing PG-inhibiting proteins (PGIPs). PGs and PGIPs belong to multi-gene families believed to have been shaped by an evolutionary arms race. The mustard leaf beetle expresses both active PGs and catalytically inactive PG pseudoenzymes. Previous studies demonstrated that (i) PGIPs target beetle PGs and (ii) the role of PG pseudoenzymes remains elusive, despite having been linked to the pectin degradation pathway. For further insight into the interaction between plant PGIPs and beetle PG family members, we combined affinity purification with proteomics and gene expression analyses, and identified novel inhibitors of beetle PGs from Chinese cabbage ( ssp. ). A beetle PG pseudoenzyme was not targeted by PGIPs, but instead interacted with PGIP-like proteins. Phylogenetic analysis revealed that PGIP-like proteins clustered apart from "classical" PGIPs but together with proteins, which have been involved in developmental processes. Our results indicate that PGIP-like proteins represent not only interesting novel PG inhibitor candidates in addition to "classical" PGIPs, but also fascinating new players in the arms race between herbivorous beetles and plant defenses.
植物拥有多种防御策略来应对微生物或食草动物的攻击。例如,植物通过表达多聚半乳糖醛酸酶抑制蛋白(PGIPs)来降低病原体或昆虫来源的多聚半乳糖醛酸酶(PGs)对细胞壁的降解活性。PGs和PGIPs属于多基因家族,据信它们是在进化的军备竞赛中形成的。芥菜叶甲同时表达活性PGs和催化无活性的PG假酶。先前的研究表明:(i)PGIPs靶向甲虫的PGs;(ii)尽管PG假酶与果胶降解途径有关,但其作用仍不清楚。为了进一步了解植物PGIPs与甲虫PG家族成员之间的相互作用,我们将亲和纯化与蛋白质组学和基因表达分析相结合,从大白菜(亚种)中鉴定出了新型的甲虫PG抑制剂。一种甲虫PG假酶未被PGIPs靶向,而是与类PGIP蛋白相互作用。系统发育分析表明,类PGIP蛋白与“经典”PGIPs聚类不同,但与参与发育过程的蛋白质聚类在一起。我们的结果表明,类PGIP蛋白不仅是除“经典”PGIPs之外有趣的新型PG抑制剂候选物,也是食草甲虫与植物防御之间军备竞赛中引人入胜的新参与者。