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Bimodal dynamics of primary metabolism-related responses in tolerant potato-Potato virus Y interaction

机译:耐受性马铃薯-马铃薯病毒Y相互作用中初级代谢相关反应的双峰动力学

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Background Potato virus Y (PVY) is a major pathogen that causes substantial economic losses in worldwide potato production. Different potato cultivars differ in resistance to PVY, from severe susceptibility, through tolerance, to complete resistance. The aim of this study was to better define the mechanisms underlying tolerant responses of potato to infection by the particularly aggressive PVY NTN strain. We focused on the dynamics of the primary metabolism-related processes during PVY NTN infection. Results A comprehensive analysis of the dynamic changes in primary metabolism was performed, which included whole transcriptome analysis, nontargeted proteomics, and photosynthetic activity measurements in potato cv. Désirée and its transgenic counterpart depleted for accumulation of salicylic acid (NahG-Désirée). Faster multiplication of virus occurred in the NahG-Désirée, with these plants developing strong disease symptoms. We show that while the dynamics of responses at the transcriptional level are extensive and bimodal, this is only partially translated to the protein level, and to the final functional outcome. Photosynthesis-related genes are transiently induced before viral multiplication is detected and it is down-regulated later on. This is reflected as a deficiency of the photosynthetic apparatus at the onset of viral multiplication only. Interestingly, specific and constant up-regulation of some RuBisCO transcripts was detected in Désirée plants, which might be important, as these proteins have been shown to interact with viral proteins. In SA-deficient and more sensitive NahG-Désirée plants, consistent down-regulation of photosynthesis-related genes was detected. A constant reduction in the photochemical efficiency from the onset of viral multiplication was identified; in nontransgenic plants this decrease was only transient. The transient reduction in net photosynthetic rate occurred in both genotypes with the same timing, and coincided with changes in stomatal conductivity. Conclusions Down-regulation of photosynthesis-related gene expression and decreased photosynthetic activity is in line with other studies that have reported the effects of biotic stress on photosynthesis. Here, we additionally detected induction of light-reaction components in the early stages of PVY NTN infection of tolerant interaction. As some of these components have already been shown to interact with viral proteins, their overproduction might contribute to the absence of symptoms in cv. Désirée.
机译:背景技术马铃薯病毒Y(PVY)是一种主要病原体,会在全球马铃薯生产中造成巨大的经济损失。不同的马铃薯品种对PVY的抗性有所不同,从严重的敏感性到耐受性,再到完全抗性。这项研究的目的是为了更好地确定马铃薯对特别是侵略性PVY NTN 菌株的感染的耐受反应的机制。我们重点研究了PVY NTN 感染期间主要代谢相关过程的动力学。结果进行了一次代谢动态变化的综合分析,包括整个转录组分析,非靶向蛋白质组学和马铃薯简历中光合活性的测量。 Désirée及其转基因对应物因水杨酸(NahG-Désirée)的积累而枯竭。 NahG-Désirée中病毒的繁殖速度更快,这些植物表现出强烈的病害症状。我们显示,虽然在转录水平上反应的动力学是广泛且双峰的,但这仅部分翻译为蛋白质水平和最终的功能结果。在检测到病毒繁殖之前,暂时诱导了与光合作用相关的基因,之后又下调了该基因。这反映为仅在病毒繁殖开始时光合装置的缺陷。有趣的是,在德西雷(Désirée)植物中检测到某些RuBisCO转录物的特异性和持续上调,这可能很重要,因为已证明这些蛋白质与病毒蛋白质相互作用。在SA缺乏且敏感性更高的NahG-Désirée植物中,检测到光合作用相关基因的持续下调。从病毒繁殖开始,光化学效率就不断降低。在非转基因植物中,这种减少只是短暂的。两种基因型在相同的时间出现净光合速率的瞬时降低,并且与气孔电导率的变化相吻合。结论光合作用相关基因表达的下调和光合活性的降低与其他报道了生物胁迫对光合作用的影响的研究一致。在这里,我们还检测了在PVY NTN 感染耐受相互作用的早期阶段光反应成分的诱导。由于这些成分中的一些已显示与病毒蛋白相互作用,因此它们的过度生产可能会导致简历中没有症状。德西雷

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