Chen Lina, Liu Ruitao, Zhu Juanli, Wang Luwei, Li Haoxian, Liu Junhao, Lu Zhenhua
Zhengzhou Fruit Research Institute Chinese Academy of Agricultural Sciences Zhengzhou China.
Zhongyuan Research Center Chinese Academy of Agricultural Sciences Xinxiang China.
Food Sci Nutr. 2024 Jun 26;12(9):6648-6659. doi: 10.1002/fsn3.4264. eCollection 2024 Sep.
The pomegranate fruit is valued for its nutritional and medicinal properties, and the composition and content of primary and secondary metabolites are the main factors impacting its nutritional and medicinal properties. However, a deep understanding of metabolites in different parts of fruit is still lacking. Here, the peel, aril, and seed of mature pomegranate fruits were analyzed separately to compare metabolic component differences using UPLC/MS-MS. A total of 858 metabolites belonging to 11 classes were identified, of which flavonoids, such as delphinidin-3-O-glucoside and cyanidin-3-O-glucoside; tannins, such as ellagic acid and punicalin; and terpenoids, such as corosolic acid and madasiatic acid, were upregulated in the peel. Lipids, such as punicic acid, methyl linolenate, and linoleic acid; alkaloids, such as indole and choline; nucleotides and derivatives mainly including 2-deoxyribose-1-phosphate and 9-(arabinosyl)-hypoxanthine, were upregulated in seeds. Phenolic acids, such as 1-O-galloyl-4,6-(S)-HHDP-β-D-glucose and 1,7-di-O-galloyl-D-sedoheptulose, and flavonoids, such as cyanidin-3-O-glucoside, cyanidin-3-O-(2″-O-xylosyl) galactoside, and delphinidin-3-O-glucoside, were upregulated in aril. The flavone and flavonol biosynthesis (ko00944) pathways were significantly enriched between the peel and seed, as were the anthocyanin biosynthesis (ko00944) pathways between the aril and seed and the flavonoid biosynthesis (ko00941) pathways between the peel and aril. Additionally, functional antioxidants, such as 10,16-dihydroxypalmitic acid, 3-O-methylellagic acid, and 3,3'-O-dimethylellagic acid, were first identified in pomegranate fruits. Our results revealed the composition and abundance of primary and secondary metabolites in pomegranate fruit, which can lay the foundation for further elucidation of its nutritional and medicinal properties.
石榴果实因其营养和药用特性而受到重视,初级和次级代谢产物的组成和含量是影响其营养和药用特性的主要因素。然而,目前仍缺乏对果实不同部位代谢产物的深入了解。在此,对成熟石榴果实的果皮、种皮和种子进行了单独分析,采用超高效液相色谱/质谱联用技术比较代谢成分差异。共鉴定出属于11类的858种代谢产物,其中,矢车菊素-3-O-葡萄糖苷和花青素-3-O-葡萄糖苷等黄酮类化合物;鞣花酸和石榴苷等单宁;以及科罗索酸和马德拉斯酸等萜类化合物在果皮中上调。石榴酸、亚麻酸甲酯和亚油酸等脂质;吲哚和胆碱等生物碱;以及主要包括2-脱氧核糖-1-磷酸和9-(阿拉伯糖基)-次黄嘌呤的核苷酸及其衍生物在种子中上调。1-O-没食子酰基-4,6-(S)-六羟基联苯二酚-β-D-葡萄糖和1,7-二-O-没食子酰基-D-景天庚酮糖等酚酸,以及花青素-3-O-葡萄糖苷、花青素-3-O-(2″-O-木糖基)半乳糖苷和矢车菊素-3-O-葡萄糖苷等黄酮类化合物在种皮中上调。黄酮和黄酮醇生物合成(ko00944)途径在果皮和种子之间显著富集,种皮和种子之间的花青素生物合成(ko00944)途径以及果皮和种皮之间的黄酮类生物合成(koo0941)途径也显著富集。此外,在石榴果实中首次鉴定出10,16-二羟基棕榈酸、3-O-甲基鞣花酸和3,3'-O-二甲基鞣花酸等功能性抗氧化剂。我们的研究结果揭示了石榴果实中初级和次级代谢产物的组成和丰度,可为进一步阐明其营养和药用特性奠定基础。