Heterologous Overexpression of Magnaporthe oryzae Effector PWL2 Enhances Rice Blast Resistance via SA-Mediated and PWL2-Derived siRNA Defense
Xiaoqian Sun, Qijing Fu, Lixia Wu, Yu Yang, Hao Luo, Qian Dong, Saijie Li, Yiting Zhao, Xuan Zhou, Suqin Xiao, Jinlu Li, Zaiquan Cheng, Sheng Peng, Qiaofang Zhong, Yunlong Du

TL;DR
Overexpressing a fungal effector gene in rice boosts resistance to blast disease through salicylic acid and small RNA mechanisms.
Contribution
Discovery that PWL2 overexpression triggers rice blast resistance via SA signaling and siRNA production.
Findings
Transgenic rice overexpressing PWL2 shows resistance to rice blast.
PWL2-derived siRNAs and SA signaling contribute to blast resistance in rice.
NPR1 gene expression is rhythmic during infection in transgenic rice.
Abstract
Fungal effectors play an important role in plant immunity. The Magnaporthe oryzae effector PWL2 plays a significant role in rice blast disease caused by this fungus. However, the function of PWL2 in rice immunity is not fully understood. In this study, transgenic rice lines overexpressing PWL2 showed resistance to rice blast. Subcellular localization showed that PWL2-GFP fusion protein is localized on the plasma membrane and cytoplasm. Salicylic acid (SA) induces rice resistance to M. oryzae. Notably, the expression of the NPR1 gene exhibited a rhythmic pattern during the early stages of M. oryzae infection in the transgenic rice lines. However, during later stages of infection, transgenic plants showed reduced levels of the NPR1, WRKY45, PR1a and PR10a genes, along with decreased H2O2 accumulation, while SA levels remained unchanged. Transcriptome analysis revealed that SA treatment…
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Taxonomy
TopicsPlant-Microbe Interactions and Immunity · Fungal and yeast genetics research · Polysaccharides and Plant Cell Walls
