Azizi Abdolbaset, Del Río Mendoza Luis E
Department of Plant Pathology, North Dakota State University, ND, U.S.A.
Department of Plant Protection, University of Kurdistan, Sanandaj, Iran.
Phytopathology. 2024 May;114(5):1000-1010. doi: 10.1094/PHYTO-10-23-0395-KC. Epub 2024 May 20.
Sclerotinia stem rot is a globally destructive plant disease caused by . Current management of Sclerotinia stem rot primarily relies on chemical fungicides and crop rotation, raising environmental concerns. In this study, we developed an eco-friendly RNA bio-fungicide targeting . Six genes were selected for double-stranded RNA (dsRNA) synthesis. Four genes, a chitin-binding domain, mitogen-activated protein kinase, oxaloacetate acetylhydrolase, and abhydrolase-3, were combined to express hairpin RNA in HT115. The effect of application of total RNA extracted from HT115 expressing hairpin RNA on disease progressive and necrosis lesions was evaluated. Gene expression analysis using real-time PCR showed silencing of the target genes using 5 ng/µl of dsRNA in a fungal liquid culture. A detached leaf assay and greenhouse application of dsRNA on canola stem and leaves showed variation in the reduction of necrosis symptoms by dsRNA of different genes, with abhydrolase-3 being the most effective. The dsRNA from a combination of four genes reduced disease severity significantly ( = 0.01). Plants sprayed with hairpin RNA from four genes had lesions that were almost 30% smaller than those of plants treated with abhydrolase-3 alone, in lab and greenhouse assays. The results of this study highlight the potential of RNA interference to manage diseases caused by ; however, additional research is necessary to optimize its efficacy.
核盘菌茎腐病是一种由……引起的全球毁灭性植物病害。目前核盘菌茎腐病的防治主要依赖化学杀菌剂和作物轮作,这引发了环境问题。在本研究中,我们开发了一种针对……的环保型RNA生物杀菌剂。选择了六个基因用于双链RNA(dsRNA)合成。将四个基因,即几丁质结合结构域、丝裂原活化蛋白激酶、草酰乙酸乙酰水解酶和水解酶-3,组合在一起在HT115中表达发夹RNA。评估了从表达发夹RNA的HT115中提取的总RNA对病害进展和坏死病斑的影响。使用实时PCR进行的基因表达分析表明,在真菌液体培养中,5 ng/µl的dsRNA可使靶基因沉默。离体叶片试验以及在油菜茎和叶上进行的dsRNA温室施用表明,不同基因的dsRNA在减轻坏死症状方面存在差异,其中水解酶-3最为有效。四个基因组合产生的dsRNA显著降低了病害严重程度(P = 0.01)。在实验室和温室试验中,喷洒了来自四个基因的发夹RNA的植物的病斑比仅用水解酶-3处理的植物的病斑小近30%。本研究结果突出了RNA干扰在防治由……引起的病害方面的潜力;然而,需要进一步研究以优化其效果。