A non-classical PUF family protein in oomycetes functions as a pre-rRNA processing regulator and a target for RNAi-based disease control
文献类型: 外文期刊
第一作者: Feng, Hui
作者: Feng, Hui;Wang, Jie;Feng, Hui;Liu, Tianli;Wan, Chuanxu;Zhang, Zhichao;Wang, Yuanchao;Zheng, Xiaobo;Ye, Wenwu;Liu, Tianli;Wan, Chuanxu;Zhang, Zhichao;Wang, Yuanchao;Zheng, Xiaobo;Ye, Wenwu
作者机构:
期刊名称:PLOS PATHOGENS ( 影响因子:4.9; 五年影响因子:5.4 )
ISSN: 1553-7366
年卷期: 2025 年 21 卷 7 期
页码:
收录情况: SCI
摘要: Ribosome biogenesis is an essential and tightly regulated process linked to cell proliferation and growth. However, its regulatory mechanisms in oomycetes, a group of organisms with significant agricultural and ecological importance, remain unclear. In this study, we identify Puf4, a non-classical PUF (Pumilio and FBF) family RNA-binding protein that plays a conserved and crucial role in pre-rRNA processing in oomycetes. Knockout of PuPuf4 in Pythium ultimum or its ortholog PsPuf4 in Phytophthora sojae results in defective vegetative growth, impaired development, and reduced pathogenicity. Specifically, PuPuf4 binds to the H68 component of 25S rRNA, and its knockout leads to overaccumulation of rRNA processing intermediates, including 5 ' ETS, ITS1, and ITS2 precursors. Additionally, the AG-rich motif identified as the first binding motif of L-shaped PUF proteins, including PuPuf4, APUM24, and ScPuf6, may contribute to their specific RNA-binding affinity due to its unique structural features. Given the conserved role of Puf4 in oomycete pathogenicity, we developed the first nano-material-free dsRNA delivery system via zoospore-specific uptake, effectively attenuating virulence in Pythium aphanidermatum and Ph. sojae through RNAi targeting Puf4. This study presents novel findings on structural and functional conservation of Puf4 and offers a promising RNAi-based strategy for controlling oomycete plant diseases.
分类号:
- 相关文献
作者其他论文 更多>>
-
Comprehensive physicochemical indicators analysis and quality evaluation model construction for the post-harvest ripening rapeseeds
作者:Xu, Qiuhui;Wang, Jie;Wang, Dan;Lv, Xin;Fu, Li;He, Ping;Mei, Desheng;Chen, Hong;Wei, Fang;Wei, Fang
关键词:Comprehensive evaluation model; Lipidomics; Physicochemical indicators; Post-harvest ripening; Quality improvement; Rapeseeds
-
Tolerance and toxicity assessment of a novel methionine source, dipeptide Met-Met on common carp Cyprinus carpio
作者:Yin, Ziyu;Liang, Xiaofang;Wang, Hao;Wang, Jie;Xue, Min;Shi, Bo;Xue, Min;He, Juyun
关键词:Met-Met; Safety assessment; Overdose; Metabolites; Common carp
-
Effects of Different Tillage Measures Combined with Straw Returning on Soil Enzyme Activity and Microbial Community Structure and Diversity
作者:Xiao, Sa;Li, Bing;Zhang, Tingting;Luo, Jianzhu;Wang, Jie;Li, Juan;Zhang, Dejian;Xiao, Sa;Li, Bing;Zhang, Tingting;Luo, Jianzhu;Wang, Jie;Li, Juan;Zhang, Dejian;Zhang, Xiangqian
关键词:tillage methods; straw returning; enzyme activity; microbial biomass; microbial diversity
-
Discrimination of superficial lymph nodes using ultrasonography and tissue metabolomics coupled with machine learning
作者:Li, Lu;Wang, Xinyue;Deng, Hongyan;Lu, Wenjuan;Zhou, Yasu;Ye, Xinhua;Li, Yong;Wang, Jie
关键词:lymph nodes; lymphoma; metastasis; ultrasonography; metabolomics
-
Otolith annulus validation and population dynamics of dark sleeper Odontobutis potamophila: insights for sustainable fisheries management
作者:Xiang, Miao;Liu, Haoran;Wang, Man;Wang, Jie;Xie, Songguang;Zhang, Lei;Xiang, Miao;Liu, Haoran;Wang, Man;Wang, Jie;Zhang, Lei;Liu, Haoran;Li, Bo;Guo, Hongxi;Zhu, Chuankun;Xie, Songguang
关键词:age validation; logistic growth function; Odontobutis potamophila; otolith; overfishing indicators
-
Genome and transcriptome analysis of the lignite-degrading Trichoderma cf. simile WF8 strain highlights potential degradation mechanisms
作者:Yao, Jinghua;Chen, Yajuan;Zhuo, Deyu;Xu, Baichao;Yan, Congwei;Li, Wanrong;Xiao, Lei;Chen, Yajuan;Zhuo, Deyu;Chen, Siqiao;Xu, Baichao;Yan, Congwei;Li, Wanrong;Feng, Hui;Deng, Sheng;Wei, Lihui;Daly, Paul;Chen, Siqiao;Chen, Siqiao;Cai, Feng M.;Steindorff, Andrei S.;Druzhinina, Irina S.
关键词:Lignite biodegradation; Trichoderma; Polyaromatic compounds; Comparative genomics
-
CsCIPK20 Improves Tea Plant Cold Tolerance by Modulating Ascorbic Acid Synthesis Through Attenuation of CsCSN5-CsVTC1 Interaction
作者:Di, Taimei;Wu, Yedie;Wang, Jie;He, Mingming;Huang, Jianyan;Li, Nana;Hao, Xinyuan;Ding, Changqing;Zeng, Jianming;Yang, Yajun;Wang, Xinchao;Wang, Lu
关键词:ascorbic acid; CsCIPK20; CsVTC1; low temperature