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Gene expression profiling of Macrophomina phaseolina infected Medicago truncatula roots reveals a role for auxin in plant tolerance against the charcoal rot pathogen

机译:感染了紫花苜蓿的紫花苜蓿根的基因表达谱揭示了生长素在植物对木炭腐烂病原体的耐受性中的作用

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摘要

The soil-borne necrotrophic fungal pathogen Macrophomina phaseolina causes charcoal rot disease in a wide range of plant species. There are no effective control methods for this disease and no genetic resistance for M. phaseolina has been identified in most field crops. Currently, little is known about the molecular mechanisms involved in host susceptibility and resistance to M. phaseolina. Using Medicago truncatula as a model, we analyzed the global gene expression profile of M. truncatula roots infected by M. phaseolina. MAPMAN analyses identified genes involved in jasmonic acid and ethylene pathways, which are important for plant resistance against necrotrophs. In addition, genes involved in auxin homeostasis, polar auxin transport and auxin signalling were also regulated by the infection process. The differential expression patterns of these auxin-related genes suggested that the host susceptibility maybe partly due to the suppression of auxin response in the host by M. phaseolina. In additional, M. truncatula plants treated with exogenous auxin gained partial resistance against M. phaseolina, further suggesting the potential role for auxin in plant defense against this necrotrophic pathogen
机译:土壤传播的坏死性真菌病原体菜豆(Macrophomina phaseolina)会在多种植物中引起木炭腐烂病。没有对该病的有效控制方法,并且在大多数田间作物中都没有发现对菜豆分枝杆菌的遗传抗性。目前,关于宿主易感性和对菜豆分枝杆菌抗性的分子机制知之甚少。以梅花苜蓿为模型,分析了被菜豆分枝杆菌感染的梅花根的全局基因表达谱。 MAPMAN分析鉴定出与茉莉酸和乙烯途径有关的基因,这些基因对于植物抗坏死病具有重要意义。另外,涉及植物生长素稳态,极性植物生长素转运和植物生长素信号传导的基因也受感染过程的调节。这些生长素相关基因的差异表达模式表明宿主易感性可能部分是由于菜豆分枝杆菌抑制了宿主中的生长素反应。另外,用外源生长素处理的截枝芒植物获得了对菜豆分枝杆菌的部分抗性,这进一步表明生长素在植物防御这种坏死性病原体中的潜在作用

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