Bonaventure Gustavo, Gfeller Aurélie, Rodríguez Víctor M, Armand Florence, Farmer Edward E
Gene Expression Laboratory, Plant Molecular Biology, University of Lausanne, Lausanne, Switzerland.
Plant Cell Physiol. 2007 Dec;48(12):1775-89. doi: 10.1093/pcp/pcm151. Epub 2007 Nov 2.
The fatty acid oxygenation up-regulated 2 (fou2) mutant in Arabidopsis thaliana creates a gain-of-function allele in a non-selective cation channel encoded by the Two Pore Channel 1 (TPC1) gene. This mutant genetically implicates cation fluxes in the control of the positive feedback loop whereby jasmonic acid (JA) stimulates its own synthesis. In this study we observed extensive transcriptome reprogramming in healthy fou2 leaves closely resembling that induced by treatment with methyl jasmonate, biotic stresses and the potassium starvation response. Proteomic analysis of fou2 leaves identified increased levels of seven biotic stress- and JA-inducible proteins. In agreement with these analyses, epistasis studies performed by crossing fou2 with aos indicated that elevated levels of JA in fou2 are the major determinant of the mutant phenotype. In addition, generation of fou2 aba1-5, fou2 etr1-1 and fou2 npr1-1 double mutants showed that the fou2 phenotype was only weakly affected by ABA levels and unaffected by mutations in NPR1 and ETR1. The results now suggest possible mechanisms whereby fou2 could induce JA synthesis/signaling early in the wound response. In contrast to fou2, transcriptome analysis of a loss-of-function allele of TPC1, tpc1-2, revealed no differential expression of JA biosynthesis genes in resting leaves. However, the analysis disclosed reduced mRNA levels of the pathogenesis-related genes PDF1.2a and THI2.1 in healthy and diseased tpc1-2 leaves. The results suggest that wild-type TPC1 contributes to their expression by mechanisms somewhat different from those affecting their expression in fou2.
拟南芥中的脂肪酸氧化上调2(fou2)突变体在由双孔通道1(TPC1)基因编码的非选择性阳离子通道中产生功能获得性等位基因。该突变体在基因上表明阳离子通量参与了茉莉酸(JA)刺激自身合成的正反馈回路的控制。在本研究中,我们观察到健康的fou2叶片中广泛的转录组重编程,这与用茉莉酸甲酯处理、生物胁迫和钾饥饿反应诱导的情况非常相似。对fou2叶片的蛋白质组分析确定了七种生物胁迫和JA诱导蛋白的水平升高。与这些分析一致,通过将fou2与aos杂交进行的上位性研究表明,fou2中JA水平的升高是突变体表型的主要决定因素。此外,fou2 aba1-5、fou2 etr1-1和fou2 npr1-1双突变体的产生表明,fou2表型仅受到ABA水平的微弱影响,不受NPR1和ETR1突变的影响。现在的结果表明了fou2在伤口反应早期诱导JA合成/信号传导的可能机制。与fou2相反,TPC1功能缺失等位基因tpc1-2的转录组分析显示,在静止叶片中JA生物合成基因没有差异表达。然而,该分析揭示了在健康和患病的tpc1-2叶片中,病程相关基因PDF1.2a和THI2.1的mRNA水平降低。结果表明,野生型TPC1通过与影响其在fou2中表达的机制略有不同的机制促进它们的表达。