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首页> 外文期刊>Scientific reports. >Simultaneous induction of jasmonic acid and disease-responsive genes signifies tolerance of American elm to Dutch elm disease
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Simultaneous induction of jasmonic acid and disease-responsive genes signifies tolerance of American elm to Dutch elm disease

机译:同时诱导茉莉酸和疾病反应基因表示美国榆树对荷兰榆树病的耐受性

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Dutch elm disease (DED), caused by three fungal species in the genus Ophiostoma, is the most devastating disease of both native European and North American elm trees. Although many tolerant cultivars have been identified and released, the tolerance mechanisms are not well understood and true resistance has not yet been achieved. Here we show that the expression of disease-responsive genes in reactions leading to tolerance or susceptibility is significantly differentiated within the first 144 hours post-inoculation (hpi). Analysis of the levels of endogenous plant defense molecules such as jasmonic acid (JA) and salicylic acid (SA) in tolerant and susceptible American elm saplings suggested SA and methyl-jasmonate as potential defense response elicitors, which was further confirmed by field observations. However, the tolerant phenotype can be best characterized by a concurrent induction of JA and disease-responsive genes at 96 hpi. Molecular investigations indicated that the expression of fungal genes (i.e. cerato ulmin) was also modulated by endogenous SA and JA and this response was unique among aggressive and non-aggressive fungal strains. The present study not only provides better understanding of tolerance mechanisms to DED, but also represents a first, verified template for examining simultaneous transcriptomic changes during American elm-fungus interactions.
机译:荷兰榆树疾病(DED),由三种真菌物种引起的,奥皮骨瘤属,是欧洲和北美榆树的最具疣的疾病。虽然已经识别和释放了许多耐受品种,但公差机制并不充分理解,并且尚未实现真正的抵抗力。在这里,我们表明,在接种后144小时内显着分化了导致耐受性或易感性的反应中的疾病响应基因的表达显着差异(HPI)。分析诸如茉莉酸(JA)和水杨酸(SA)耐受性和易感美国ELM树苗的内源性植物防御分子水平建议SA和甲基 - 己酸酯作为潜在的防御响应Elictors,其进一步通过现场观察确认。然而,耐受性表型可以最好地通过在96 HPI下同时诱导JA和疾病响应基因。分子调查表明,通过内源SA和JA调节真菌基因(即CERO ulmin)的表达,并且这种反应在侵袭性和非侵袭性的真菌菌株中是独一无二的。本研究不仅可以更好地理解耐受机制,还代表了在美国榆树 - 真菌相互作用期间检查同时转录组变化的第一验证模板。

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