RNAi in the Rhizarian Phytopathogen Plasmodiophora brassicae : The Causal Agent of Clubroot Disease in Cruciferous Crops

Although RNA interference (RNAi) is widespread and functionally important across eukaryotes, RNAi pathways are diverse or even lost in some lineages. Rhizaria represents a major and distinct eukaryotic supergroup that includes Plasmodiophora brassicae (Pb), the causal agent of cruciferous clubroot disease, yet RNAi in this lineage remains poorly understood. Here, we characterized an unusual RNAi pathway in Pb. Small RNA sequencing across five representative Pb life stages revealed abundant siRNAs and miRNAs characterized by a predominant 21-nt length, phased genomic distribution, 2-nt 3' overhangs, and a strong 5'-cytidine bias. Three Pb miRNAs were further validated by northern blotting and stem-loop RT-qPCR. Genome analysis identified two canonical AGO homologs, PbAGO1 and PbAGO2, but no Dicer homologs, except for an RNase III-containing Drosha-like protein, PbDRL. Functional analyses showed that PbAGO1 and PbAGO2 mediate gene silencing, whereas PbDRL is required for sRNA biogenesis. Further, the cell wall component chitin was identified from Pb zoosporangia during the early infection and RNAi interfering with its biosynthesis in transgenic plants of Arabidopsis and Brassica napus blocked Pb early infection and conferred broad-spectrum resistance. Our study uncovers an unusual RNAi pathway in Rhizaria and provides a promising strategy to control cruciferous clubroot disease.

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Publication Details

Journal
Advanced Science
Published
2026-09-06
DOI
https://doi.org/10.1002/advs.202524028
Primary Topic
Plant Disease Resistance and Genetics
Type
article
Field-Weighted Citation Impact
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article

RNAi in the Rhizarian Phytopathogen Plasmodiophora brassicae : The Causal Agent of Clubroot Disease in Cruciferous Crops

Xiaoping Fang, Cuicui Shen, Lixia Gao, 侯加昌 et al.
Advanced Science
Plant Disease Resistance and Genetics
article

RNAi in the Rhizarian Phytopathogen Plasmodiophora brassicae : The Causal Agent of Clubroot Disease in Cruciferous Crops

Xiaoping Fang, Cuicui Shen, Lixia Gao, 侯加昌, Xiaoling Dun, Chuanji Zhao, Yupo Wu, Xiong Zhang, Yi Zhang, Shengyi Liu, Longqi Pan, Feng Gao, Lijiang Liu, Li Ren
article en

Abstract

Although RNA interference (RNAi) is widespread and functionally important across eukaryotes, RNAi pathways are diverse or even lost in some lineages. Rhizaria represents a major and distinct eukaryotic supergroup that includes Plasmodiophora brassicae (Pb), the causal agent of cruciferous clubroot disease, yet RNAi in this lineage remains poorly understood. Here, we characterized an unusual RNAi pathway in Pb. Small RNA sequencing across five representative Pb life stages revealed abundant siRNAs and miRNAs characterized by a predominant 21-nt length, phased genomic distribution, 2-nt 3' overhangs, and a strong 5'-cytidine bias. Three Pb miRNAs were further validated by northern blotting and stem-loop RT-qPCR. Genome analysis identified two canonical AGO homologs, PbAGO1 and PbAGO2, but no Dicer homologs, except for an RNase III-containing Drosha-like protein, PbDRL. Functional analyses showed that PbAGO1 and PbAGO2 mediate gene silencing, whereas PbDRL is required for sRNA biogenesis. Further, the cell wall component chitin was identified from Pb zoosporangia during the early infection and RNAi interfering with its biosynthesis in transgenic plants of Arabidopsis and Brassica napus blocked Pb early infection and conferred broad-spectrum resistance. Our study uncovers an unusual RNAi pathway in Rhizaria and provides a promising strategy to control cruciferous clubroot disease.

Advanced Science
Second Hospital of Yichang (CN), Oil Crops Research Institute (CN)
Life in Land
Openalex Percentile: Top 12%
Plant Disease Resistance and Genetics
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