首页> 外文期刊>Journal of food quality >Comparison of Phytochemical Profile, Mineral Content, and In Vitro Antioxidant Activities of Corchorus capsularis and Corchorus olitorius Leaf Extracts from Different Populations
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Comparison of Phytochemical Profile, Mineral Content, and In Vitro Antioxidant Activities of Corchorus capsularis and Corchorus olitorius Leaf Extracts from Different Populations

机译:不同群体Corchorus Capsularis和Corchorus olitorius叶提取物的植物化学型材,矿物质含量和体外抗氧化活性的比较

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In addition to fiber, Corchorus (jute) leaf is also rich in secondary metabolites and is used in folk medicine in jute-producing communities. It has been reported that jute halts progression of and helps manage different chronic diseases like tumors, obesity, diabetes, and cardiovascular diseases. Various phytochemical, mineral, and antioxidant potency properties of 30 genotypes belonging to Corchorus capsularis and Corchorus olitorius were evaluated in the current study. The results demonstrate that the range of total flavonoids and polyphenols was 3.04 to 13.66?mg rutin equivalent (RE)/g and 5.12 to 7.78?mg gallic acid equivalent (GAE)/g DW, respectively. Total tannin and saponin content in both species was 13.08 to 26.95?mg tannic acid (TAE)/g and 34.45 to 114.59?mg tea saponin (TSE)/g DW, respectively, when analyzed for the first time. Moreover, this study sincerely establishes that jute leaf is a great source of mineral elements (magnesium, zinc, and selenium) and could also be a good energy source. The antioxidant properties of samples were examined with three unique strategies, including DPPH, FRAP, and ABTS values of leaf extract ranging from 206.42 to 351.77?μg/ml (IC50), 16.69 to 94.69?mmol Fe (II)/g DW, and 50.27 to 149.90?mmol trolox equivalent (TE)/g DW, respectively. A principle component analysis (PCA) explained 58.52% of the variance, while a hierarchical cluster analysis (HCA) was performed to construct five distinct groups based on their secondary compound metabolites content and antioxidant activities. Therefore, this study facilitates selection of the high genotypes that might be used as new materials for developing industrial and medicinal uses in addition to sorting genotypes for future genetic engineering purposes in order to enhance a particular bioactive compound and its natural antioxidants that are beneficial for human health.
机译:除纤维外,Corchorus(黄麻)叶还富含次生代谢物,用于朱氏纺织社区的民间医学。据报道,黄麻暂停进展,有助于管理肿瘤,肥胖,糖尿病和心血管疾病等不同的慢性疾病。在目前的研究中评估了属于Corchorus Capsularis和Corchorus olitorius的30种基因型的各种植物化学,矿物质和抗氧化剂效力性质。结果表明,总黄酮和多酚的范围分别为3.04至13.66×mg牛丁当量(RE)/ g和5.12至7.78毫克,分别是无磷酸当量(GAE)/ g DW。在第一次分析时,两种物种中的总单宁和皂苷含量分别为13.08至26.95毫克单宁酸(TSE)/ g和34.45至114.59〜114.59.2克茶蛋白(TSE)/ g DW。此外,这项研究真诚地确定黄麻叶是矿物元素(镁,锌和硒)的伟大来源,也可以是一个良好的能源。检查样品的抗氧化性能,用三种独特的策略检查,包括DPPH,FRAP和叶子提取物的ABTS值,范围为206.42至351.77Ω·77Ω·77Ω·77μmαμg/ ml(IC50),16.69至94.69〜94.69?MMOL FE(II)/ g DW和50.27至149.90?Mmol Trolox等效物(TE)/ g DW。原理分析(PCA)的差异解释了58.52%,而进行分层聚类分析(HCA)以基于其二次复合代谢物含量和抗氧化活性来构建五个不同的基团。因此,除了对未来的基因工程目的进行分类基因型外,该研究还有助于选择可用作开发工业和药用用途的新材料的高基因型,以便增强特定的生物活性化合物及其对人类有益的自然抗氧化剂健康。

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