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Leaf Vitamin C Contents Modulate Plant Defense Transcripts and Regulate Genes That Control Development through Hormone Signaling

机译:叶片中的维生素C含量可调节植物防御转录本并调节通过激素信号控制发育的基因。

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摘要

Vitamin C deficiency in the Arabidopsis mutant vtc1 causes slow growth and late flowering. This is not attributable to changes in photosynthesis or increased oxidative stress. We have used the vtc1 mutant to provide a molecular signature for vitamin C deficiency in plants. Using statistical analysis, we show that 171 genes are expressed differentially in vtc1 compared with the wild type. Many defense genes are activated, particularly those that encode pathogenesis-related proteins. Furthermore, transcript changes indicate that growth and development are constrained in vtc1 by the modulation of abscisic acid signaling. Abscisic acid contents are significantly higher in vtc1 than in the wild type. Key features of the molecular signature of ascorbate deficiency can be reversed by incubating vtc1 leaf discs in ascorbate. This finding provides evidence that many of the observed effects on transcript abundance in vtc1 result from ascorbate deficiency. Hence, through modifying gene expression, vitamin C contents not only act to regulate defense and survival but also act via phytohormones to modulate plant growth under optimal conditions.
机译:拟南芥突变体vtc1中的维生素C缺乏会导致生长缓慢和开花晚。这不归因于光合作用的改变或氧化应激的增加。我们已使用vtc1突变体为植物中的维生素C缺乏症提供分子标记。使用统计分析,我们显示与野生型相比,vtc1中有171个基因差异表达。许多防御基因被激活,尤其是那些编码与病程相关蛋白的基因。此外,转录本变化表明vtc1中的生长和发育受到脱落酸信号传导的调控。 vtc1中的脱落酸含量明显高于野生型。抗坏血酸缺乏症的分子特征的关键特征可以通过在抗坏血酸中孵育vtc1叶盘来逆转。这一发现提供了证据,表明对vtc1的转录本丰度有许多观察到的影响是由于抗坏血酸缺乏引起的。因此,通过修饰基因表达,维生素C的含量不仅可以起到调节防御和存活的作用,而且还可以通过植物激素来调节植物在最佳条件下的生长。

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