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Identification and Characterization of Nodulation-Signaling Pathway 2 a Gene of Medicago truncatula Involved in Nod Factor Signaling

机译:结节信号通路2截短苜蓿基因参与结点因子信号转导的鉴定与鉴定

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摘要

Bacterially derived Nod factor is critical in the establishment of the legume/rhizobia symbiosis. Understanding the mechanisms of Nod factor perception and signal transduction in the plant will greatly advance our understanding of this complex interaction. Here, we describe the identification of a new locus, nodulation-signaling pathway 2 (NSP2), of Medicago truncatula that is involved in Nod factor signaling. Mutants at this locus are blocked for Nod factor-induced gene expression and show a reduced root hair deformation response. nsp2 plants also show a complete absence of infection and cortical cell division following Sinorhizobium meliloti inoculation. Nod factor-induced calcium spiking, one of the earliest responses tested, is still functional in these mutant plants. We conclude that the gene NSP2 is a component of the Nod factor signal transduction pathway that lies downstream of the calcium-spiking response.
机译:细菌来源的Nod因子对于豆类/根瘤菌共生的建立至关重要。了解植物中Nod因子感知和信号转导的机制将极大地促进我们对这种复杂相互作用的理解。在这里,我们描述了一个新的基因位点,苜蓿截断的结瘤信号通路2(NSP2)的鉴定,其中涉及Nod因子信号传导。该基因座的突变体因Nod因子诱导的基因表达而被阻断,并显示出减少的根毛变形反应。接种中华根瘤菌后,nsp2植物也显示完全没有感染和皮质细胞分裂。 Nod因子诱导的钙突增是测试的最早反应之一,在这些突变植物中仍然起作用。我们得出的结论是,基因NSP2是Nod因子信号转导途径的一个组成部分,位于钙加标应答的下游。

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