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HIGS: Host-Induced Gene Silencing in the Obligate Biotrophic Fungal Pathogen Blumeria graminis

机译:HIGS:专性的生物营养性真菌病原体Blumeria graminis中的宿主诱导的基因沉默。

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摘要

Powdery mildew fungi are obligate biotrophic pathogens that only grow on living hosts and cause damage in thousands of plant species. Despite their agronomical importance, little direct functional evidence for genes of pathogenicity and virulence is currently available because mutagenesis and transformation protocols are lacking. Here, we show that the accumulation in barley (Hordeum vulgare) and wheat (Triticum aestivum) of double-stranded or antisense RNA targeting fungal transcripts affects the development of the powdery mildew fungus Blumeria graminis. Proof of concept for host-induced gene silencing was obtained by silencing the effector gene Avra10, which resulted in reduced fungal development in the absence, but not in the presence, of the matching resistance gene Mla10. The fungus could be rescued from the silencing of Avra10 by the transient expression of a synthetic gene that was resistant to RNA interference (RNAi) due to silent point mutations. The results suggest traffic of RNA molecules from host plants into B. graminis and may lead to an RNAi-based crop protection strategy against fungal pathogens.
机译:白粉病真菌是专性的生物营养病原体,仅在活的宿主上生长,并对数千种植物造成损害。尽管它们具有农学上的重要性,但由于缺乏诱变和转化方案,因此目前尚无针对病原性和毒力基因的直接功能证据。在这里,我们表明靶向真菌转录本的双链或反义RNA在大麦(Hordeum vulgare)和小麦(Triticum aestivum)中的积累影响白粉病真菌Blumeria graminis的发育。通过使效应子基因Avra10沉默获得宿主诱导的基因沉默的概念证明,这导致在不存在但不存在匹配抗性基因Mla10的情况下真菌的发育减少。可以通过瞬时表达对合成基因的瞬时表达来拯救真菌,该合成基因可抵抗由于沉默点突变引起的RNA干扰(RNAi),从而使Avra10沉默。结果表明,RNA分子从寄主植物转移到芽孢杆菌中,可能导致针对真菌病原体的基于RNAi的作物保护策略。

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