Large-scale metabolome analysis reveals dynamic changes of metabolites during foxtail millet grain filling

代谢组 狐尾 类黄酮生物合成 代谢途径 缬氨酸 食品科学 代谢组学 生物 新陈代谢 农学 植物 代谢物 生物化学 基因 氨基酸 生物信息学 基因表达 转录组
作者
Tao Wang,Lu Xing,Hui Song,Yangyang Wei,Pengtao Li,Quanwei Lu,Nan Hu,Yuling Liu,Yongqing Zhang,Jinrong Liu,Baohong Zhang,Renhai Peng
出处
期刊:Food Research International [Elsevier]
卷期号:165: 112516-112516 被引量:1
标识
DOI:10.1016/j.foodres.2023.112516
摘要

Compared with traditional staple crops, foxtail millet grain is rich in nutrition and beneficial to human health. Foxtail millet is also tolerance to various abiotic stresses, including drought, making it a good plant for growing in barren land. The study on the composition of metabolites and its dynamics changes during grain development is helpful to understand the process of foxtail millet grain formation. In our study, metabolic and transcriptional analysis were used to uncover the metabolic processes that could influence grain filling in foxtail millet. A total of 2104 known metabolites, belonging to 14 categories, were identified during grain filling. Functional analysis of DAMs and DEGs revealed a stage-specific metabolic properties in foxtail millet grain filling. Some important metabolic processes, such as flavonoid biosynthesis, glutathione metabolism, linoleic acid metabolism, starch and sucrose metabolism and valine, leucine and isoleucine biosynthesis were co-mapped for DEGs and DAMs. Thus, we constructed a gene-metabolite regulatory network of these metabolic pathways to explain their potential functions during grain filling. Our study showed the important metabolic processes during grain filling and focused on the dynamic changes of related metabolites and genes at different stages, which provided a reference for us to better understand and improve foxtail millet grain development and yield.
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