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用于作物真菌病害管理的跨界小RNA沉默

Trans-Kingdom sRNA Silencing in for Crop Fungal Disease Management.

作者信息

Ouyang Yuqing, Xia Yunong, Tang Xianyu, Qin Lei, Xia Shitou

机构信息

Hunan Provincial Key Laboratory of Phytohormones and Growth Development, College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China.

Crop Research Institute, Hunan Academy of Agricultural Sciences, Changsha 410125, China.

出版信息

Pathogens. 2025 Apr 21;14(4):398. doi: 10.3390/pathogens14040398.


DOI:10.3390/pathogens14040398
PMID:40333207
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12030631/
Abstract

is a globally widespread and vast destructive plant pathogenic fungus that causes significant yield losses in crops. Due to the lack of effective resistant germplasm resources, the control of diseases caused by largely relies on chemical fungicides. However, excessive use of these chemicals not only causes environmental concerns but also leads to the increased development of resistance in . In contrast, trans-kingdom sRNA silencing-based technologies, such as host-induced gene silencing (HIGS) and spray-induced gene silencing (SIGS), offer novel, effective, and environmentally friendly methods for the management of infection. This review summarizes recent advances in the identification of pathogenic genes, target gene selection, categories, and application of trans-kingdom RNA interference (RNAi) technologies targeting this pathogen. Although some challenges, including off-target effects and the efficiency of external sRNA uptake, exist, recent findings have proposed solutions for further improvement. Combined with the latest developments in CRISPR/Cas gene editing and other technologies, trans-kingdom RNAi has significant potential to become a crucial tool in the control of sclerotinia stem rot (SSR), mitigating the impact of on crop production.

摘要

是一种在全球广泛分布且极具破坏性的植物病原真菌,会导致农作物大幅减产。由于缺乏有效的抗性种质资源,对由其引起的病害防治在很大程度上依赖化学杀菌剂。然而,过度使用这些化学药剂不仅引发环境问题,还导致其抗性不断增强。相比之下,基于跨王国小RNA沉默的技术,如寄主诱导基因沉默(HIGS)和喷雾诱导基因沉默(SIGS),为防治其感染提供了新颖、有效且环保的方法。本综述总结了在该病原菌致病基因鉴定、靶基因选择、跨王国RNA干扰(RNAi)技术的类别及应用方面的最新进展。尽管存在一些挑战,包括脱靶效应和外源小RNA摄取效率等问题,但近期研究结果已提出进一步改进的解决方案。结合CRISPR/Cas基因编辑等技术的最新进展,跨王国RNAi在防治菌核病(SSR)方面具有巨大潜力,可减轻其对作物生产的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b54/12030631/1007cee5a81b/pathogens-14-00398-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b54/12030631/1007cee5a81b/pathogens-14-00398-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b54/12030631/1007cee5a81b/pathogens-14-00398-g001.jpg

相似文献

[1]
Trans-Kingdom sRNA Silencing in for Crop Fungal Disease Management.

Pathogens. 2025-4-21

[2]
Control of Sclerotinia sclerotiorum via an RNA interference (RNAi)-mediated targeting of SsPac1 and SsSmk1.

Planta. 2024-5-14

[3]
RNA interference-mediated targeting of monooxygenase SsMNO1 for controlling Sclerotinia stem rot caused by Sclerotinia sclerotiorum.

Pest Manag Sci. 2025-3

[4]
Effective Control of Sclerotinia Stem Rot in Canola Plants Through Application of Exogenous Hairpin RNA of Multiple Genes.

Phytopathology. 2024-5

[5]
Double-Stranded RNA Targeting White Mold Argonaute 2 for Disease Control via Spray-Induced Gene Silencing.

Phytopathology. 2024-6

[6]
Spray-Induced Gene Silencing (SIGS) as a Tool for the Management of Pine Pitch Canker Forest Disease.

Plant Dis. 2025-1

[7]
Small RNAs from the plant pathogenic fungus Sclerotinia sclerotiorum highlight host candidate genes associated with quantitative disease resistance.

Mol Plant Pathol. 2019-9

[8]
Host-induced gene silencing reveals the role of Sclerotinia sclerotiorum oxaloacetate acetylhydrolase gene in fungal oxalic acid accumulation and virulence.

Microbiol Res. 2022-5

[9]
Introduction of Large Sequence Inserts by CRISPR-Cas9 To Create Pathogenicity Mutants in the Multinucleate Filamentous Pathogen Sclerotinia sclerotiorum.

mBio. 2018-6-26

[10]
Host induced gene silencing of the Sclerotinia sclerotiorum ABHYDROLASE-3 gene reduces disease severity in Brassica napus.

PLoS One. 2022

本文引用的文献

[1]
The endocytic pathway for absorption of exogenous RNAs in .

mLife. 2025-2-7

[2]
Exploring the interaction between endornavirus and : mechanisms of phytopathogenic fungal virulence and antivirus.

mBio. 2025-3-12

[3]
Exploring the challenges of RNAi-based strategies for crop protection.

Adv Biotechnol (Singap). 2024-7-15

[4]
A Virulence Factor from Targets the Host Chloroplast Proteins to Promote Infection.

Plants (Basel). 2024-12-6

[5]
RNA interference-mediated targeting of monooxygenase SsMNO1 for controlling Sclerotinia stem rot caused by Sclerotinia sclerotiorum.

Pest Manag Sci. 2025-3

[6]
An effector essential for virulence of necrotrophic fungi targets plant HIRs to inhibit host immunity.

Nat Commun. 2024-10-30

[7]
Editing of the MeSWEET10a promoter yields bacterial blight resistance in cassava cultivar SC8.

Mol Plant Pathol. 2024-10

[8]
Recent advances in virulence of a broad host range plant pathogen : a mini-review.

Front Microbiol. 2024-6-19

[9]
Control of Sclerotinia sclerotiorum via an RNA interference (RNAi)-mediated targeting of SsPac1 and SsSmk1.

Planta. 2024-5-14

[10]
Viruses shuttle between fungi and plants.

Trends Microbiol. 2024-7

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