Mascellani Bergo Anna, Leiss Kirsten, Havlik Jaroslav
Department of Food Science, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, 16500 Prague, Czechia.
Business Unit Greenhouse Horticulture, Wageningen University & Research, 2665MV Bleiswijk, Netherlands.
J Agric Food Chem. 2024 Apr 17;72(15):8332-8346. doi: 10.1021/acs.jafc.3c09362. Epub 2024 Mar 19.
Metabolomics has become an important tool in elucidating the complex relationship between a plant genotype and phenotype. For over 20 years, nuclear magnetic resonance (NMR) spectroscopy has been known for its robustness, quantitative capabilities, simplicity, and cost-efficiency. H NMR is the method of choice for analyzing a broad range of relatively abundant metabolites, which can be used for both capturing the plant chemical profile at one point in time and understanding the pathways that underpin plant defense. This systematic Review explores how H NMR-based plant metabolomics has contributed to understanding the role of various compounds in plant responses to biotic stress, focusing on both primary and secondary metabolites. It clarifies the challenges and advantages of using H NMR in plant metabolomics, interprets common trends observed, and suggests guidelines for method development and establishing standard procedures.
代谢组学已成为阐明植物基因型与表型之间复杂关系的重要工具。二十多年来,核磁共振(NMR)光谱因其稳健性、定量能力、简便性和成本效益而闻名。氢核磁共振(¹H NMR)是分析多种相对丰富代谢物的首选方法,可用于在某一时刻捕捉植物化学图谱,以及了解支撑植物防御的途径。本系统综述探讨了基于¹H NMR的植物代谢组学如何有助于理解各种化合物在植物对生物胁迫反应中的作用,重点关注初级和次级代谢物。它阐明了在植物代谢组学中使用¹H NMR的挑战和优势,解释了观察到的常见趋势,并提出了方法开发和建立标准程序的指导方针。