Cai Huiren, Wang Wei, Rui Lu, Han Libo, Luo Mingyu, Liu Na, Tang Dingzhong
State Key Laboratory of Ecological Control of Fujian-Taiwan Crop Pests, Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, Plant Immunity Center, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Plant J. 2021 Aug;107(3):775-786. doi: 10.1111/tpj.15345. Epub 2021 May 30.
Nucleotide-binding site (NBS)-leucine-rich repeat (LRR) domain receptor (NLR) proteins play important roles in plant innate immunity by recognizing pathogen effectors. The Toll/interleukin-1 receptor (TIR)-NBS (TN) proteins belong to a subtype of the atypical NLRs, but their function in plant immunity is poorly understood. The well-characterized Arabidopsis thaliana typical coiled-coil (CC)-NBS-LRR (CNL) protein Resistance to Pseudomonas syringae 5 (RPS5) is activated after recognizing the Pseudomonas syringae type III effector AvrPphB. To explore whether the truncated TN proteins function in CNL-mediated immune signaling, we examined the interactions between the Arabidopsis TN proteins and RPS5, and found that TN13 and TN21 interacted with RPS5. However, only TN13, but not TN21, was involved in the resistance to P. syringae pv. tomato (Pto) strain DC3000 carrying avrPphB, encoding the cognate effector recognized by RPS5. Moreover, the regulation of Pto DC3000 avrPphB resistance by TN13 appeared to be specific, as loss of function of TN13 did not compromise resistance to Pto DC3000 hrcC or Pto DC3000 avrRpt2. In addition, we demonstrated that the CC and NBS domains of RPS5 play essential roles in the interaction between TN13 and RPS5. Taken together, our results uncover a direct functional link between TN13 and RPS5, suggesting that TN13 acts as a partner in modulating RPS5-activated immune signaling, which constitutes a previously unknown mechanism for TN-mediated regulation of plant immunity.
核苷酸结合位点(NBS)-富含亮氨酸重复序列(LRR)结构域受体(NLR)蛋白通过识别病原体效应子在植物先天免疫中发挥重要作用。Toll/白细胞介素-1受体(TIR)-NBS(TN)蛋白属于非典型NLR的一个亚型,但它们在植物免疫中的功能尚不清楚。拟南芥中特征明确的典型卷曲螺旋(CC)-NBS-LRR(CNL)蛋白对丁香假单胞菌5(RPS5)的抗性在识别丁香假单胞菌III型效应子AvrPphB后被激活。为了探究截短的TN蛋白是否在CNL介导的免疫信号传导中发挥作用,我们检测了拟南芥TN蛋白与RPS5之间的相互作用,发现TN13和TN21与RPS5相互作用。然而,只有TN13,而不是TN21,参与了对携带avrPphB的丁香假单胞菌番茄致病变种(Pto)菌株DC3000的抗性,avrPphB编码RPS5识别的同源效应子。此外,TN13对Pto DC3000 avrPphB抗性的调控似乎具有特异性,因为TN13功能丧失并不影响对Pto DC3000 hrcC或Pto DC3000 avrRpt2的抗性。此外,我们证明了RPS5的CC和NBS结构域在TN13与RPS5的相互作用中起关键作用。综上所述,我们的结果揭示了TN13与RPS5之间的直接功能联系,表明TN13作为调节RPS5激活的免疫信号传导的伙伴,这构成了TN介导的植物免疫调节的一种前所未知的机制。