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首页> 外文期刊>Frontiers in Plant Science >A Concise Review on Multi-Omics Data Integration for Terroir Analysis in Vitis vinifera
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A Concise Review on Multi-Omics Data Integration for Terroir Analysis in Vitis vinifera

机译:<斜斜体> vitis vinifera

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Vitis vinifera (grapevine) is one of the most important fruit crops, both for fresh consumption and wine and spirit production. The term terroir is frequently used in viticulture and the wine industry to relate wine sensory attributes to its geographic origin. Although, it can be cultivated in a wide range of environments, differences in growing conditions have a significant impact on fruit traits that ultimately affect wine quality. Understanding how fruit quality and yield are controlled at a molecular level in grapevine in response to environmental cues has been a major driver of research. Advances in the area of genomics, epigenomics, transcriptomics, proteomics and metabolomics, have significantly increased our knowledge on the abiotic regulation of yield and quality in many crop species, including V. vinifera . The integrated analysis of multiple ‘omics’ can give us the opportunity to better understand how plants modulate their response to different environments. However, ‘omics’ technologies provide a large amount of biological data and its interpretation is not always straightforward, especially when different ‘omic’ results are combined. Here we examine the current strategies used to integrate multi-omics, and how these have been used in V. vinifera . In addition, we also discuss the importance of including epigenomics data when integrating omics data as epigenetic mechanisms could play a major role as an intermediary between the environment and the genome.
机译:血管vinifera(葡萄树)是最重要的水果作物之一,既可用于新鲜的消费和葡萄酒和精神生产。术语雷雷尔经常用于葡萄栽培和葡萄酒行业,将葡萄酒感官属性与其地理起源相关联。虽然,可以在各种环境中栽培,但增长条件的差异对果实特征产生重大影响,最终影响葡萄酒质量。了解果实质量和产量如何在葡萄藤的分子水平上控制,以应对环境提示一直是研究的主要司机。基因组学,表观症,转录组科,蛋白质组学和代谢组织领域的进展,我们对许多作物物种中的生物质和质量的非生物调节有显着提高了我们的知识,包括V.Vinifera。对多个'OMICS'的综合分析可以让我们有机会更好地了解植物如何调节对不同环境的回应。然而,'OMICS'技术提供了大量的生物数据,其解释并不总是直接的,特别是当不同的“室内”的结果组合时。在这里,我们检查用于集成多个OMIC的当前策略,以及这些策略以及这些策略如何在V. Vinifera中使用。此外,我们还讨论了在将OMICS数据整合时包括表观胶质瘤数据的重要性,因为表观遗传机制可以在环境和基因组之间作为中间体发挥重要作用。

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