An RNAi-Based Control of Fusarium graminearum Infections Through Spraying of Long dsRNAs Involves a Plant Passage and Is Controlled by the Fungal Silencing Machinery

生物 RNA沉默 病理系统 RNA干扰 掷骰子 基因沉默 人口 麦角甾醇 核糖核酸 细胞生物学 生物技术 病菌 微生物学 遗传学 植物 基因 社会学 人口学
作者
Aline Koch,Dagmar Biedenkopf,Alexandra C. U. Furch,Lennart Weber,Oliver Roßbach,Eltayb Abdellatef,Lukas Linicus,Johannsmeier Jan,Lukas Jelonek,Alexander Goesmann,Vinitha Cardoza,John N. McMillan,Tobias Mentzel,Karl‐Heinz Kogel
出处
期刊:PLOS Pathogens [Public Library of Science]
卷期号:12 (10): e1005901-e1005901 被引量:516
标识
DOI:10.1371/journal.ppat.1005901
摘要

Meeting the increasing food and energy demands of a growing population will require the development of ground-breaking strategies that promote sustainable plant production. Host-induced gene silencing has shown great potential for controlling pest and diseases in crop plants. However, while delivery of inhibitory noncoding double-stranded (ds)RNA by transgenic expression is a promising concept, it requires the generation of transgenic crop plants which may cause substantial delay for application strategies depending on the transformability and genetic stability of the crop plant species. Using the agronomically important barley-Fusarium graminearum pathosystem, we alternatively demonstrate that a spray application of a long noncoding dsRNA (791 nt CYP3-dsRNA), which targets the three fungal cytochrome P450 lanosterol C-14α-demethylases, required for biosynthesis of fungal ergosterol, inhibits fungal growth in the directly sprayed (local) as well as the non-sprayed (distal) parts of detached leaves. Unexpectedly, efficient spray-induced control of fungal infections in the distal tissue involved passage of CYP3-dsRNA via the plant vascular system and processing into small interfering (si)RNAs by fungal DICER-LIKE 1 (FgDCL-1) after uptake by the pathogen. We discuss important consequences of this new finding on future RNA-based disease control strategies. Given the ease of design, high specificity, and applicability to diverse pathogens, the use of target-specific dsRNA as an anti-fungal agent offers unprecedented potential as a new plant protection strategy.
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