a Department of Horticulture , University of Wisconsin-Madison , Madison , Wisconsin , USA.
b Department of Applied Biology , College of Sciences, University of Sharjah , Sharjah , United Arab Emirates.
Crit Rev Food Sci Nutr. 2018 Jul 24;58(11):1791-1807. doi: 10.1080/10408398.2017.1285752. Epub 2017 Jul 21.
Today, the dramatic changes in types of food consumed have led to an increased burden of chronic diseases. Therefore, the emphasis of food research is not only to ensure quality food that can supply adequate nutrients to prevent nutrition related diseases, but also to ensure overall physical and mental-health. This has led to the concept of functional foods and nutraceuticals (FFNs), which can be ideally produced and delivered through plants. Metabolomics can help in getting the most relevant functional information, and thus has been considered the greatest -OMICS technology to date. However, metabolomics has not been exploited to the best potential in plant sciences. The technology can be leveraged to identify the health promoting compounds and metabolites that can be used for the development of FFNs. This article reviews (i) plant-based FFNs-related metabolites and their health benefits; (ii) use of different analytic platforms for targeted and non-targeted metabolite profiling along with experimental considerations; (iii) exploitation of metabolomics to develop FFNs in plants using various biotechnological tools; and (iv) potential use of metabolomics in plant breeding. We have also provided some insights into integration of metabolomics with latest genome editing tools for metabolic pathway regulation in plants.
如今,食物消费类型的巨大变化导致了慢性疾病负担的增加。因此,食品研究的重点不仅是确保提供充足营养以预防营养相关疾病的优质食品,还要确保整体身心健康。这导致了功能性食品和营养保健品(FFNs)的概念的产生,这些产品可以通过植物来理想地生产和提供。代谢组学可以帮助获得最相关的功能信息,因此被认为是迄今为止最伟大的“组学”技术。然而,代谢组学在植物科学中并没有被充分利用。该技术可以用于识别具有健康促进作用的化合物和代谢物,这些化合物和代谢物可用于开发 FFNs。本文综述了:(i)植物来源的 FFNs 相关代谢物及其对健康的益处;(ii)使用不同分析平台进行靶向和非靶向代谢物分析,以及实验注意事项;(iii)利用代谢组学利用各种生物技术工具在植物中开发 FFNs;(iv)代谢组学在植物育种中的潜在应用。我们还提供了一些关于代谢组学与最新基因组编辑工具整合用于植物代谢途径调控的见解。