SPL50调控水稻的细胞死亡和对木格氏球菌的抗性

IF 4.8 1区 农林科学 Q1 AGRONOMY Rice Pub Date : 2024-08-13 DOI:10.1186/s12284-024-00731-x
Banpu Ruan, Hui Wu, Yaohuang Jiang, Jiehua Qiu, Fei Chen, Yanli Zhang, Yu Qiao, Mingyue Tang, Yingying Ma, Qian Qian, Limin Wu, Yanchun Yu
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引用次数: 0

摘要

背景:斑叶50(spl50)是一种新型的水稻病变模拟突变体(LMM),它的鉴定为了解植物的程序性细胞死亡(PCD)和先天性免疫的机制提供了重要信息:结果:基于甲烷磺酸乙酯(EMS)诱导突变,spl50突变体在没有病原体的情况下模拟超敏反应,在分蘖期后出现自发性坏死病变。SPL50是一种ARM重复蛋白,对控制活性氧(ROS)代谢和提高稻瘟病抗性至关重要。这项工作还证明了 spl50 对光合效率和叶绿体发育的不利影响。SPL50 在细胞质中的定位以及在各种植物组织中的组成型表达表明了它在细胞信号传导和胁迫响应中的重要作用。鉴于全球粮食安全问题日益受到关注,本研究强调了 SPL50 在调节程序性细胞死亡(PCD)和增强植物免疫反应中的关键作用,有助于制定提高作物抗病性的策略:结论:新发现的水稻 SPL50 基因编码一种 ARM 重复蛋白,揭示了它在调节 PCD 和先天性免疫反应中的关键作用,而不受病原体攻击的影响。
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SPL50 Regulates Cell Death and Resistance to Magnaporthe Oryzae in Rice.

Background: 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.

Results: 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 cytoplasm and constitutive expression in various plant tissues. In light of growing concerns regarding global food security, this study highlights the pivotal role of SPL50 in regulating programmed cell death (PCD) and enhancing the immune response in plants, contributing to strategies for improving crop disease resistance.

Conclusions: The novel identification of the SPL50 gene in rice, encoding an ARM repeat protein, reveals its pivotal role in regulating PCD and innate immune responses independently of pathogen attack.

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来源期刊
Rice
Rice AGRONOMY-
CiteScore
10.10
自引率
3.60%
发文量
60
审稿时长
>12 weeks
期刊介绍: Rice aims to fill a glaring void in basic and applied plant science journal publishing. This journal is the world''s only high-quality serial publication for reporting current advances in rice genetics, structural and functional genomics, comparative genomics, molecular biology and physiology, molecular breeding and comparative biology. Rice welcomes review articles and original papers in all of the aforementioned areas and serves as the primary source of newly published information for researchers and students in rice and related research.
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