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Molecular analysis of post-harvest withering in grape by AFLP transcriptional profiling

机译:AFLP转录谱分析葡萄采后枯萎的分子分析

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摘要

Post-harvest withering of grape berries is used in the production of dessert and fortified wines to alter must quality characteristics and increase the concentration of simple sugars. The molecular processes that occur during withering are poorly understood, so a detailed transcriptomic analysis of post-harvest grape berries was carried out by AFLP-transcriptional profiling analysis. This will help to elucidate the molecular mechanisms of berry withering and will provide an opportunity to select markers that can be used to follow the drying process and evaluate different drying techniques. AFLP-TP identified 699 withering-specific genes, 167 and 86 of which were unique to off-plant and on-plant withering, respectively. Although similar molecular events were revealed in both withering processes, it was apparent that off-plant withering induced a stronger dehydration stress response resulting in the high level expression of genes involved in stress protection mechanisms, such as dehydrin and osmolite accumulation. Genes involved in hexose metabolism and transport, cell wall composition, and secondary metabolism (particularly the phenolic and terpene compound pathways) were similarly regulated in both processes. This work provides the first comprehensive analysis of the molecular events underpinning post-harvest withering and could help to define markers for different withering processes.
机译:葡萄浆果的采后枯萎可用于生产甜点和强化葡萄酒,以改变必须的品质特性并增加单糖的浓度。对凋谢过程中发生的分子过程了解甚少,因此通过AFLP转录谱分析对收获后的葡萄浆果进行了详细的转录组分析。这将有助于阐明浆果枯萎的分子机制,并为选择可用于追踪干燥过程并评估不同干燥技术的标记提供机会。 AFLP-TP鉴定了699个枯萎特异基因,其中167和86个分别对植物体内和植物内枯萎特有。尽管在两个凋谢过程中都揭示了相似的分子事件,但是很明显,植物的凋谢诱导了更强的脱水胁迫反应,导致参与胁迫保护机制的基因(如脱水蛋白和渗透压物质的积累)的高水平表达。涉及己糖代谢和转运,细胞壁组成和次级代谢(特别是酚类和萜类化合物途径)的基因在两个过程中均受到类似的调控。这项工作提供了对支持收获后枯萎的分子事件的首次全面分析,并可能有助于为不同的枯萎过程定义标记。

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