Liu Fengjuan, Jiao Chengjin, Bi Chunxiao, Xu Quanle, Chen Peng, Heuberger Adam L, Krishnan Hari B
College of Life Sciences, Northwest A&F University , Yangling, Shaanxi 712100, China.
College of Bioengineering and Biotechnology, Tianshui Normal University , Tianshui, Gansu 741000, China.
J Agric Food Chem. 2017 Nov 29;65(47):10206-10213. doi: 10.1021/acs.jafc.7b04037. Epub 2017 Nov 15.
A study was performed to identify metabolic processes associated with β-ODAP synthesis in grass pea using a metabolomics approach. GC-MS metabolomics was performed on seedlings at 2, 6, and 25 days after sowing. A total of 141 metabolites were detected among the three time points representing much of grass pea primary metabolism, including amino acids, carbohydrates, purines, and others. Principal component analysis revealed unique metabolite profiles of grass pea tissues among the three time points. Fold change, hierarchical clustering, and orthogonal projections to latent structures-discriminant analyses, and biochemical pathway ontologies were used to characterize covariance of metabolites with β-ODAP content. The data indicates that alanine and nitrogen metabolism, cysteine and sulfur metabolism, and purine, pyrimidine, and pyridine metabolism were associated with β-ODAP metabolism. Our results reveal the metabolite profiles in grass pea development and provide insights into mechanisms of β-ODAP accumulation and degradation.
采用代谢组学方法开展了一项研究,以确定与草豌豆中β-草酰氨基丙氨酸(β-ODAP)合成相关的代谢过程。在播种后第2、6和25天对幼苗进行气相色谱-质谱联用(GC-MS)代谢组学分析。在这三个时间点共检测到141种代谢物,它们代表了草豌豆的大部分初级代谢,包括氨基酸、碳水化合物、嘌呤等。主成分分析揭示了三个时间点草豌豆组织独特的代谢物谱。采用倍数变化、层次聚类、正交投影到潜在结构判别分析以及生化途径本体来表征代谢物与β-ODAP含量的协方差。数据表明丙氨酸和氮代谢、半胱氨酸和硫代谢以及嘌呤、嘧啶和吡啶代谢与β-ODAP代谢相关。我们的结果揭示了草豌豆发育过程中的代谢物谱,并为β-ODAP积累和降解机制提供了见解。