Department of Plant Pathology, University of California, Davis, Davis, CA, USA.
Department of Plant Pathology, National Chung Hsing University, Taichung, Taiwan.
Sci Adv. 2021 May 7;7(19). doi: 10.1126/sciadv.abe0809. Print 2021 May.
Effectors are small, secreted proteins that promote pathogen virulence. Although key to microbial infections, unlocking the intrinsic function of effectors remains a challenge. We have previously shown that members of the fungal Avr4 effector family use a carbohydrate-binding module of family 14 (CBM14) to bind chitin in fungal cell walls and protect them from host chitinases during infection. Here, we show that gene duplication in the Avr4 family produced an Avr4-2 paralog with a previously unknown effector function. Specifically, we functionally characterize Avr4-2, a paralog of Avr4 in the tomato pathogen , and show that although it contains a CBM14 domain, it does not bind chitin or protect fungi against chitinases. Instead, Avr4-2 interacts with highly de-esterified pectin in the plant's middle lamellae or primary cell walls and interferes with Ca-mediated cross-linking at cell-cell junction zones, thus loosening the plant cell wall structure and synergizing the activity of pathogen secreted endo-polygalacturonases.
效应物是小的分泌蛋白,可促进病原体的毒力。尽管它们是微生物感染的关键,但要揭示效应物的固有功能仍然是一个挑战。我们之前已经表明,真菌 Avr4 效应子家族的成员使用家族 14(CBM14)的碳水化合物结合模块来结合真菌细胞壁中的几丁质,并在感染过程中保护它们免受宿主几丁质酶的侵害。在这里,我们表明 Avr4 家族中的基因复制产生了一个具有未知效应子功能的 Avr4-2 旁系同源物。具体来说,我们对番茄病原体中的 Avr4 家族的 Avr4-2 进行了功能表征,并表明尽管它含有 CBM14 结构域,但它不与几丁质结合,也不能保护真菌免受几丁质酶的侵害。相反,Avr4-2 与植物中层或初生细胞壁中高度去酯化的果胶相互作用,并干扰 Ca 介导的细胞-细胞连接区的交联,从而使植物细胞壁结构变松,并协同病原体分泌的内切多聚半乳糖醛酸酶的活性。