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Identification of Putative Stage-Specific Grapevine Berry Biomarkers and Omics Data Integration into Networks1[C][W][OA]

机译:确定特定阶段的葡萄浆果生物标志物并将组学数据整合到网络1 [C] [W] [OA]

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摘要

The analysis of grapevine (Vitis vinifera) berries at the transcriptomic, proteomic, and metabolomic levels can provide great insight into the molecular events underlying berry development and postharvest drying (withering). However, the large and very different data sets produced by such investigations are difficult to integrate. Here, we report the identification of putative stage-specific biomarkers for berry development and withering and, to our knowledge, the first integrated systems-level study of these processes. Transcriptomic, proteomic, and metabolomic data were integrated using two different strategies, one hypothesis free and the other hypothesis driven. A multistep hypothesis-free approach was applied to data from four developmental stages and three withering intervals, with integration achieved using a hierarchical clustering strategy based on the multivariate bidirectional orthogonal projections to latent structures technique. This identified stage-specific functional networks of linked transcripts, proteins, and metabolites, providing important insights into the key molecular processes that determine the quality characteristics of wine. The hypothesis-driven approach was used to integrate data from three withering intervals, starting with subdata sets of transcripts, proteins, and metabolites. We identified transcripts and proteins that were modulated during withering as well as specific classes of metabolites that accumulated at the same time and used these to select subdata sets of variables. The multivariate bidirectional orthogonal projections to latent structures technique was then used to integrate the subdata sets, identifying variables representing selected molecular processes that take place specifically during berry withering. The impact of this holistic approach on our knowledge of grapevine berry development and withering is discussed.
机译:对葡萄(Vitis vinifera)浆果进行转录组,蛋白质组学和代谢组学水平的分析可以为深入了解浆果发育和采后干燥(枯萎)的分子事件提供深刻的见解。但是,这种调查所产生的庞大而截然不同的数据集很难整合。在这里,我们报告鉴定出用于浆果发育和枯萎的特定阶段生物标志物的鉴定,据我们所知,这是对这些过程的首次综合系统级研究。转录组学,蛋白质组学和代谢组学数据使用两种不同的策略进行整合,一种无假设,另一种基于假设。一种多步骤无假设方法应用于来自四个发展阶段和三个枯竭区间的数据,并使用基于多变量双向正交投影到潜在结构技术的分层聚类策略实现了集成。这确定了连接的转录物,蛋白质和代谢产物的特定阶段的功能网络,从而为确定葡萄酒质量特征的关键分子过程提供了重要见解。假设驱动的方法用于整合三个枯萎间隔的数据,从转录物,蛋白质和代谢物的子数据集开始。我们鉴定了在枯萎过程中被调节的转录本和蛋白质,以及同时积累的特定类别的代谢物,并使用它们来选择变量的子数据集。然后使用多变量双向正交投影到潜在结构技术来整合子数据集,识别代表特定在浆果枯萎过程中发生的分子过程的变量。讨论了这种整体方法对我们对葡萄浆果发育和枯萎的认识的影响。

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