Plant Chemetics Laboratory, Department of Plant Sciences, University of Oxford, South Parks Road, OX1 3RB, Oxford, UK.
Nat Commun. 2020 Sep 2;11(1):4393. doi: 10.1038/s41467-020-18069-5.
Rcr3 is a secreted protease of tomato that is targeted by fungal effector Avr2, a secreted protease inhibitor of the fungal pathogen Cladosporium fulvum. The Avr2-Rcr3 complex is recognized by receptor-like protein Cf-2, triggering hypersensitive cell death (HR) and disease resistance. Avr2 also targets Rcr3 paralog Pip1, which is not required for Avr2 recognition but contributes to basal resistance. Thus, Rcr3 acts as a guarded decoy in this interaction, trapping the fungus into a recognition event. Here we show that Rcr3 evolved > 50 million years ago (Mya), whereas Cf-2 evolved <6Mya by co-opting the pre-existing Rcr3 in the Solanum genus. Ancient Rcr3 homologs present in tomato, potato, eggplants, pepper, petunia and tobacco can be inhibited by Avr2 with the exception of tobacco Rcr3. Four variant residues in Rcr3 promote Avr2 inhibition, but the Rcr3 that co-evolved with Cf-2 lacks three of these residues, indicating that the Rcr3 co-receptor is suboptimal for Avr2 binding. Pepper Rcr3 triggers HR with Cf-2 and Avr2 when engineered for enhanced inhibition by Avr2. Nicotiana benthamiana (Nb) is a natural null mutant carrying Rcr3 and Pip1 alleles with deleterious frame-shift mutations. Resurrected NbRcr3 and NbPip1 alleles were active proteases and further NbRcr3 engineering facilitated Avr2 inhibition, uncoupled from HR signalling. The evolution of a receptor co-opting a conserved pathogen target contrasts with other indirect pathogen recognition mechanisms.
Rcr3 是番茄分泌的一种蛋白酶,它是真菌病原体 Cladosporium fulvum 的分泌型蛋白酶抑制剂 Avr2 的靶标。Avr2-Rcr3 复合物被受体样蛋白 Cf-2 识别,触发过敏性细胞死亡(HR)和抗病性。Avr2 还靶向 Rcr3 旁系同源物 Pip1,它不是 Avr2 识别所必需的,但有助于基础抗性。因此,Rcr3 在这种相互作用中充当受保护的诱饵,将真菌困在识别事件中。在这里,我们表明 Rcr3 是在 5000 多万年前进化而来的,而 Cf-2 是在 600 万年前通过在茄属植物中利用现有的 Rcr3 进化而来的。番茄、土豆、茄子、辣椒、矮牵牛和烟草中存在的古老 Rcr3 同源物可以被 Avr2 抑制,但烟草 Rcr3 除外。Rcr3 中的四个变异残基促进了 Avr2 的抑制,但与 Cf-2 共同进化的 Rcr3 缺乏这三个残基,这表明 Rcr3 共同受体对 Avr2 结合的作用不理想。当为增强对 Avr2 的抑制而设计时,辣椒 Rcr3 与 Cf-2 和 Avr2 触发 HR。Nicotiana benthamiana (Nb) 是一种天然的 null 突变体,携带具有有害移码突变的 Rcr3 和 Pip1 等位基因。复活的 NbRcr3 和 NbPip1 等位基因是活性蛋白酶,进一步的 NbRcr3 工程促进了 Avr2 抑制,与 HR 信号脱耦。受体对保守病原体靶标的共捕获的进化与其他间接的病原体识别机制形成对比。