Council for Agricultural Research and Economics (CREA) , Research Centre for Cereal and Industrial Crops (CREA-CI) , S.S. 673 , Km 25,200, 71122 Foggia , Italy.
Council for Agricultural Research and Economics (CREA) , Research Centre for Cereal and Industrial Crops (CREA-CI) , S.S. 11 per Torino , Km 2,5, 13100 Vercelli , Italy.
J Agric Food Chem. 2019 Mar 20;67(11):3069-3085. doi: 10.1021/acs.jafc.8b07097. Epub 2019 Mar 8.
Metabolomics is increasingly being applied in various fields offering a highly informative tool for high-throughput diagnostics. However, in plant sciences, metabolomics is underused, even though plant studies are relatively easy and cheap when compared to those on humans and animals. Despite their importance for human nutrition, cereals, and especially wheat, remain understudied from a metabolomics point of view. The metabolomics of durum wheat has been essentially neglected, although its genetic structure allows the inference of common mechanisms that can be extended to other wheat and cereal species. This review covers the present achievements in durum wheat metabolomics highlighting the connections with the metabolomics of other cereal species (especially bread wheat). We discuss the metabolomics data from various studies and their relationships to other "-omics" sciences, in terms of wheat genetics, abiotic and biotic stresses, beneficial microbes, and the characterization and use of durum wheat as feed, food, and food ingredient.
代谢组学在各个领域的应用越来越广泛,为高通量诊断提供了一个非常有信息的工具。然而,在植物科学中,代谢组学的应用相对较少,尽管与人类和动物的研究相比,植物研究相对简单且成本较低。尽管谷物,尤其是小麦,对人类营养很重要,但从代谢组学的角度来看,它们的研究仍然不足。硬粒小麦的代谢组学基本上被忽视了,尽管其遗传结构允许推断出可以扩展到其他小麦和谷物物种的共同机制。本综述涵盖了硬粒小麦代谢组学的现有成果,突出了与其他谷物物种(特别是面包小麦)的代谢组学的联系。我们讨论了来自不同研究的代谢组学数据及其与其他“组学”科学的关系,包括小麦遗传学、非生物和生物胁迫、有益微生物,以及硬粒小麦作为饲料、食品和食品成分的特性和用途。