State Key Laboratory of Crop Stress Biology for Arid Areas and College of Plant Protection, Northwest A&F University, Yangling, Shaanxi, China.
State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan Agricultural University, Kunming, Yunnan, China.
Mol Plant Pathol. 2023 Dec;24(12):1522-1534. doi: 10.1111/mpp.13390. Epub 2023 Oct 2.
Wheat cultivar Xiaoyan 6 (XY6) has high-temperature seedling-plant (HTSP) resistance to Puccinia striiformis f. sp. tritici (Pst). However, the molecular mechanism of Pst effectors involved in HTSP resistance remains unclear. In this study, we determined the interaction between two Pst effectors, PstCEP1 and PSTG_11208, through yeast two-hybrid (Y2H), bimolecular fluorescence complementation (BiFC), and pull-down assays. Transient overexpression of PSTG_11208 enhanced HTSP resistance in different temperature treatments. The interaction between PstCEP1 and PSTG_11208 inhibited the resistance enhancement by PSTG_11208. Furthermore, the wheat apoplastic thaumatin-like protein 1 (TaTLP1) appeared to recognize Pst invasion by interacting with PSTG_11208 and initiate the downstream defence response by the pathogenesis-related protein TaPR1. Silencing of TaTLP1 and TaPR1 separately or simultaneously reduced HTSP resistance to Pst in XY6. Moreover, we found that PstCEP1 targeted wheat ferredoxin 1 (TaFd1), a homologous protein of rice OsFd1. Silencing of TaFd1 affected the stability of photosynthesis in wheat plants, resulting in chlorosis on the leaves and reducing HTSP resistance. Our findings revealed the synergistic mechanism of effector proteins in the process of pathogen infection.
小麦品种小偃 6 (XY6)对小麦条锈菌具有高温成株抗性(HTSP)。然而,与 HTSP 抗性相关的 Pst 效应子的分子机制尚不清楚。在本研究中,我们通过酵母双杂交(Y2H)、双分子荧光互补(BiFC)和下拉测定确定了两个 Pst 效应子 PstCEP1 和 PSTG_11208 之间的相互作用。PSTG_11208 的瞬时过表达增强了不同温度处理下的 HTSP 抗性。PstCEP1 和 PSTG_11208 之间的相互作用抑制了 PSTG_11208 增强的抗性。此外,小麦细胞外硫素样蛋白 1(TaTLP1)似乎通过与 PSTG_11208 相互作用来识别 Pst 的入侵,并通过病程相关蛋白 TaPR1 启动下游防御反应。分别或同时沉默 TaTLP1 和 TaPR1 降低了 XY6 对 Pst 的 HTSP 抗性。此外,我们发现 PstCEP1 靶向小麦铁氧还蛋白 1(TaFd1),这是水稻 OsFd1 的同源蛋白。TaFd1 的沉默影响了小麦植株光合作用的稳定性,导致叶片出现黄化,降低了 HTSP 抗性。我们的研究结果揭示了效应蛋白在病原体感染过程中的协同作用机制。