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首页> 外文期刊>Phytopathology >Enhanced Resistance to Fusarium graminearum in Transgenic Arabidopsis Plants Expressing a Modified Plant Thionin
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Enhanced Resistance to Fusarium graminearum in Transgenic Arabidopsis Plants Expressing a Modified Plant Thionin

机译:在转基因拟南芥植物中表达改性植物Thionin的转基因拟南芥植物中的抗性抗性

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The fungal pathogen Fusarium graminearum causes Fusarium head blight (FHB) on wheat, barley, and other grains. FHB results in yield reductions and contaminates grain with trichothecene mycotoxins, which threaten food safety and food security. Innovative mechanisms for controlling FHB are urgently needed. We have previously shown that transgenic tobacco and citrus plants expressing a modified thionin (Mthionin) exhibited enhanced resistance toward several bacterial pathogens. The aim of this study was to investigate whether overexpression of Mthionin could be similarly efficacious against F. graminearum, and whether transgenic expression of Mthionin impacts the plant microbiome. Transgenic Arabidopsis plants expressing Mthionin were generated and confirmed. When challenged with F. graminearum, Mthionin-expressing plants showed less disease and fungal biomass in both leaves and inflorescences compared with control plants. When infiltrated into leaves, macroconidia of F. graminearum germinated at lower rates and produced less hyphal growth in Arabidopsis leaves expressing Mthionin. Moreover, marker genes related to defense signaling pathways were expressed at significantly higher levels after F. graminearum infection in Mthionin transgenic Arabidopsis plants. However, Mthionin expression did not appreciably alter the overall microbiome associated with transgenic plants grown under controlled conditions; across leaves and roots of Mthionin-expressing and control transgenic plants, only a few bacterial and fungal taxa differed, and differences between Mthionin transformants were of similar magnitude compared with control plants. In sum, our data indicate that Mthionin is a promising candidate to produce transgenic crops for reducing FHB severity and ultimately mycotoxin contamination.
机译:真菌病原体纤肢素甘油素导致小麦,大麦和其他谷物上的镰刀头枯萎(FHB)。 FHB导致产量减少和污染谷物,培养食品安全和粮食安全。迫切需要控制FHB的创新机制。我们之前已经表明,表达改性的Thionin(Mthionin)的转基因烟草和柑橘植物表现出对几种细菌病原体的增强的抗性。本研究的目的是探讨Mthionin的过表达是否可能对F.甘黄素的相似性有效,以及甘氨酸的转基因表达是否会影响植物微生物组。产生表达甘氨酸的转基因拟南芥植物并确认。当用F. Graminearum挑战时,与对照植物相比,表达群岛的植物在叶片和花序中显示出较少的疾病和真菌生物量。当渗透到叶片中时,F. Graminearum的Macroconidia以较低的速率发芽,并在表达甘氨酸的拟南芥叶中产生更少的亚腿生长。此外,与防御信号途径相关的标记基因在MthionIn转基因拟南芥植物中的F. Graminearum感染后在显着更高的水平下表达。然而,Mthionin表达并未明显改变与在受控条件下生长的转基因植物相关的总微生物组;在表达汞素和控制转基因植物的叶片和根部,只有少数细菌和真菌分类群不同,与对照植物相比,Mthion素转化体之间的差异具有相似的幅度。总而言之,我们的数据表明,Mthionin是一种有希望的候选者,用于产生转基因作物以减少FHB严重程度并最终霉菌毒素污染。

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