SPL50 negatively regulates cell death and disease resistance in rice

Author:

Ruan Banpu1,Wu Hui1,Jiang Yaohuang1,Qiu Jiehua2,Chen Fei1,Zhang Yanli1,Qiao Yu1,Tang Mingyue1,Ma Yingying1,Qian Qian2,Wu Limin1,Yu Yancun1

Affiliation:

1. Hangzhou Normal University

2. China National Rice Research Institute

Abstract

Abstract

The identification of spotted leaf 50 (spl50), a novel lesion mimic mutant (LMM) in rice, provides critical insights into the mechanisms underlying programmed cell death (PCD) and innate immunity in plants. Based on ethyl methane sulfonate (EMS)-induced mutagenesis, the spl50 mutant mimics hypersensitive responses in the absence of pathogen by displaying spontaneous necrotic lesions after the tillering phase. SPL50, an ARM repeat protein essential for controlling reactive oxygen species (ROS) metabolism and boosting resistance to blast disease, was identified by map-based cloning techniques. This work also demonstrates the detrimental effects of spl50 on photosynthetic efficiency and chloroplast development. The crucial significance of SPL50 in cellular signaling and stress response is shown by its localization to the cell membrane and constitutive expression in various plant tissues. Given increasing concerns about global food security, this research underscores the critical role of SPL50 in modulating PCD and fortifying the immune response, contributing to the development of strategies for enhancing crop disease resistance.

Publisher

Springer Science and Business Media LLC

Reference39 articles.

1. Homologous U-box E3 Ubiquitin Ligases OsPUB2 and OsPUB3 Are Involved in the Positive Regulation of Low Temperature Stress Response in Rice (Oryza sativa L);Byun MY;Front Plant Sci,2017

2. Identification and fine mapping of lesion mimic mutant spl36 in rice (Oryza sativa L);Cai L;Breed Sci,2021

3. SPL5, a cell death and defense-related gene, encodes a putative splicing factor 3b subunit 3 (SF3b3) in rice;Chen X;Mol Breed,2012

4. Disruption of EARLY LESION LEAF 1, encoding a cytochrome P450 monooxygenase, induces ROS accumulation and cell death in rice;Cui Y;Plant J,2021

5. The CC-NB-LRR OsRLR1 mediates rice disease resistance through interaction with OsWRKY19;Du D;Plant Biotechnol J,2021

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