代谢组
类黄酮
悬钩子
代谢组学
初级代谢物
类黄酮生物合成
生物
植物
灌木
蔷薇科
食品科学
生物化学
代谢物
生物信息学
转录组
基因表达
抗氧化剂
基因
作者
Yaqiong Wu,Xin Huang,Hao Yang,Shanshan Zhang,Lianfei Lyu,Weilin Li,Wenlong Wu
标识
DOI:10.1016/j.foodres.2022.112313
摘要
Blackberry is an economically important shrub species of Rubus in the Rosaceae family. It is rich in phenolic compounds, which have many health effects and pharmaceutical value. The utilization of metabolites from various blackberry tissues is still in the primary stage of development, so investigating the metabolites in various tissues is of practical significance. In this study, nontargeted LC − MS metabolomics was used to identify and measure metabolites in the roots, stems, leaves and fruits (green, red, and black fruits) of blackberry “Chester”. We found that 1,427 and 874 metabolites were annotated in the positive and negative ion modes (POS; NEG), respectively. Differentially abundant metabolites (DAMs) between the leaf and root groups were the most abundant (POS: 249; NEG: 141), and the DAMs between the green and red fruit groups were the least abundant (POS: 21; NEG: 14). Moreover, the DAMs in different fruit development stages were far less than those in different tissues. There were significant differences in flavonoid biosynthesis-related pathways among the comparison groups. Trend analysis showed that the profile 10 had the largest number of metabolites. This study provides a scientific basis for the classification and efficient utilization of resources in various tissues of blackberry plants and the directional development of blackberry products.
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