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Constitutive cyclic GMP accumulation in Arabidopsis thaliana compromises systemic acquired resistance induced by an avirulent pathogen by modulating local signals

机译:拟南芥中本构循环GMP的积累通过调节局部信号来破坏无毒病原体诱导的系统获得性抗药性

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摘要

The infection of Arabidopsis thaliana plants with avirulent pathogens causes the accumulation of cGMP with a biphasic profile downstream of nitric oxide signalling. However, plant enzymes that modulate cGMP levels have yet to be identified, so we generated transgenic A. thaliana plants expressing the rat soluble guanylate cyclase (GC) to increase genetically the level of cGMP and to study the function of cGMP in plant defence responses. Once confirmed that cGMP levels were higher in the GC transgenic lines than in wild-type controls, the GC transgenic plants were then challenged with bacterial pathogens and their defence responses were characterized. Although local resistance was similar in the GC transgenic and wild-type lines, differences in the redox state suggested potential cross-talk between cGMP and the glutathione redox system. Furthermore, large-scale transcriptomic and proteomic analysis highlighted the significant modulation of both gene expression and protein abundance at the infection site, inhibiting the establishment of systemic acquired resistance. Our data indicate that cGMP plays a key role in local responses controlling the induction of systemic acquired resistance in plants challenged with avirulent pathogens.
机译:拟南芥植物被无毒病原体感染导致一氧化氮下游的cGMP呈双相分布。但是,调节cGMP水平的植物酶尚未确定,因此我们产生了表达大鼠可溶性鸟苷酸环化酶(GC)的转基因拟南芥植物,以遗传方式提高cGMP的水平并研究cGMP在植物防御反应中的功能。一旦证实GC转基因品系中的cGMP水平高于野生型对照,便用细菌病原体攻击GC转基因植物,并鉴定其防御反应。尽管在GC转基因和野生型品系中局部耐药性相似,但氧化还原状态的差异表明cGMP与谷胱甘肽氧化还原系统之间存在潜在的串扰。此外,大规模的转录组和蛋白质组学分析突出显示了感染部位基因表达和蛋白质丰度的显着调节,抑制了系统获得性抗性的建立。我们的数据表明,cGMP在控制无毒病原体攻击的植物中获得系统获得性抗性的局部反应中起关键作用。

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