首页> 外文期刊>Planta: An International Journal of Plant Biology >The primary module in Norway spruce defence signalling against H. annosum s.l. seems to be jasmonate-mediated signalling without antagonism of salicylate-mediated signalling
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The primary module in Norway spruce defence signalling against H. annosum s.l. seems to be jasmonate-mediated signalling without antagonism of salicylate-mediated signalling

机译:挪威的主要模块是云杉防御对H. annosum s.l的信号。似乎是茉莉酸介导的信号,没有水杨酸介导的信号的拮抗作用

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A key tree species for the forest industry in Europe is Norway spruce [Picea abies (L.) Karst.]. One of its major diseases is stem and butt rot caused by Heterobasidion parviporum (Fr.) Niemel? & Korhonen, which causes extensive revenue losses every year. In this study, we investigated the parallel induction of Norway spruce genes presumably associated with salicylic acid- and jasmonic acid/ethylene-mediated signalling pathways previously observed in response to H. parviporum. Relative gene expression levels in bark samples of genes involved in the salicylic acid- and jasmonic acid/ethylene-mediated signalling pathways after wounding and inoculation with either the saprotrophic biocontrol fungus Phlebiopsis gigantea or with H. parviporum were analysed with quantitative PCR at the site of the wound and at two distal locations from the wound/inoculation site to evaluate their roles in the induced defence response to H. parviporum in Norway spruce. Treatment of Norway spruce seedlings with methylsalicylate, methyljasmonate and inhibitors of the jasmonic acid/ethylene signalling pathway, as well as the Phenylalanine ammonia lyase inhibitor 2-aminoindan-2-phosphonic acid were conducted to determine the responsiveness of genes characteristic of the different pathways to different hormonal stimuli. The data suggest that jasmonic acid-mediated signalling plays a central role in the induction of the genes analysed in this study irrespective of their responsiveness to salicylic acid. This may suggest that jasmonic acid-mediated signalling is the prioritized module in the Norway spruce defence signalling network against H. parviporum and that there seems to be no immediate antagonism between the modules in this interaction.
机译:欧洲森林产业的主要树种是挪威云杉[Picea abies(L.)Karst。]。它的主要疾病之一是细小杂种异花粉病(Fer。Niemel)引起的茎杆和臀部腐烂。 &Korhonen,每年造成大量的收入损失。在这项研究中,我们调查了可能与水杨酸和茉莉酸/乙烯介导的信号转导通路相关的挪威云杉基因的平行诱导,而先前观察到的是对小孢子菌的应答。在腐烂和接种腐化营养性生物防治真菌巨大假单胞菌或小H. parviporum的伤口和接种后,参与水杨酸和茉莉酸/乙烯介导的信号通路的基因的树皮样品中的相对基因表达水平通过定量PCR分析。在伤口处和伤口/接种部位的两个远端位置,以评估它们在挪威云杉中诱导的对细小孔菌的防御反应中的作用。进行了水杨酸甲酯,茉莉酸甲酯和茉莉酸/乙烯信号途径抑制剂以及苯丙氨酸氨裂解酶抑制剂2-氨基茚满-2-膦酸对挪威云杉幼苗的处理,以确定不同途径的特征基因对不同的激素刺激。数据表明,茉莉酸介导的信号传导在本研究中分析的基因的诱导中起着核心作用,而不论它们对水杨酸的反应能力如何。这可能表明,茉莉酸介导的信号传导是挪威云杉防御小蜂嗜血杆菌信号网络中的优先模块,并且在这种相互作用中各模块之间似乎没有直接的拮抗作用。

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