Center for Crop Disease and Insect Pests, Rice Research Institute, Sichuan Agricultural University, Chengdu, 611130, China.
Institute of Biosciences and Biotechnology Research, Department of Plant Science and Landscape Architecture, University of Maryland, College Park, MD, 20850, USA.
Plant J. 2019 Apr;98(1):55-70. doi: 10.1111/tpj.14199. Epub 2019 Feb 7.
The extrahaustorial membrane (EHM) is a host-derived interfacial membrane encasing the haustorium of powdery mildew fungi. Arabidopsis thaliana RESISTANCE TO POWDERY MILDEW 8.2 (RPW8.2) is specifically targeted to the EHM via two EHM-targeting signals. Here, we demonstrate that proper coordination between the trafficking forces engaged via the EHM-targeting signals and the nuclear localization signals (NLSs), as well as the nuclear export signals (NESs), in RPW8.2 is critical for the activation of cell death and defense. We show that in the absence of pathogens, RPW8.2 is partitioned between the cytoplasm and the nucleus, and turned over via both the 26S proteasome- and the vacuole-dependent pathways. Enhanced cytoplasmic localization of RPW8.2 by tagging it with a NES led to lethal cell death. By contrast, enhanced nuclear localization of RPW8.2 by adding an NLS to it resulted in resistance to powdery mildew. Whereas expression of the NES-containing C-terminal domain of RPW8.2 in the cytoplasm is sufficient to trigger cell death, no such cell death-inducing activity is found with RPW8.2 variants that contain the two EHM-targeting signals along with the NES-containing C-terminal domain. In addition, we present evidence for the involvement of a leaf senescence pathway in RPW8.2-mediated cell death and defense. Taken together, our data suggest that RPW8.2 is subject to adjustment by distinct and perhaps coordinated mechanisms for its localization and function via interaction with the multiple intramolecular trafficking signals, which should provide further insights into RPW8.2-activated, EHM-focused resistance against powdery mildew.
细胞外膜(EHM)是一种宿主衍生的界面膜,包裹着粉霉真菌的吸器。拟南芥 RESISTANCE TO POWDERY MILDEW 8.2(RPW8.2)通过两个 EHM 靶向信号专门靶向 EHM。在这里,我们证明了通过 EHM 靶向信号和核定位信号(NLS)以及核输出信号(NES)参与的运输力之间的适当协调,以及 RPW8.2 中的适当协调,对于激活细胞死亡和防御至关重要。我们表明,在没有病原体的情况下,RPW8.2 分配在细胞质和核之间,并通过 26S 蛋白酶体和液泡依赖性途径进行翻转。通过用 NES 标记 RPW8.2 增强其细胞质定位会导致致命的细胞死亡。相比之下,通过添加 NLS 增强 RPW8.2 的核定位会导致对粉霉的抗性。虽然将 RPW8.2 的含有 NES 的 C 末端结构域表达在细胞质中足以引发细胞死亡,但在含有两个 EHM 靶向信号以及含有 NES 的 C 末端结构域的 RPW8.2 变体中,没有发现这种细胞死亡诱导活性。此外,我们提供了证据表明涉及叶衰老途径在 RPW8.2 介导的细胞死亡和防御中。综上所述,我们的数据表明,RPW8.2 通过与多个分子内运输信号相互作用,通过独特且协调的机制来调整其定位和功能,这应该为 RPW8.2 激活的、针对粉霉的 EHM 焦点抗性提供进一步的见解。