School of Food and Bioengineering, Zhengzhou University of Light Industry, Zhengzhou 450002, China.
Collaborative Innovation Center for Food Production and Safety, Zhengzhou University of Light Industry, Zhengzhou 450002, China.
Molecules. 2018 Apr 13;23(4):900. doi: 10.3390/molecules23040900.
The phytonutrient concentrations of broccoli ( var. italica) florets, stems, and leaves were compared to evaluate the value of stem and leaf by-products as a source of valuable nutrients. Primary metabolites, including amino acids, organic acids, and sugars, as well as glucosinolates, carotenoids, chlorophylls, vitamins E and K, essential mineral elements, total phenolic content, antioxidant activity, and expression of glucosinolate biosynthesis and hydrolysis genes were quantified from the different broccoli tissues. Broccoli florets had higher concentrations of amino acids, glucoraphanin, and neoglucobrassicin compared to other tissues, whereas leaves were higher in carotenoids, chlorophylls, vitamins E and K, total phenolic content, and antioxidant activity. Leaves were also good sources of calcium and manganese compared to other tissues. Stems had the lowest nitrile formation from glucosinolate. Each tissue exhibited specific core gene expression profiles supporting glucosinolate metabolism, with different gene homologs expressed in florets, stems, and leaves, which suggests that tissue-specific pathways function to support primary and secondary metabolic pathways in broccoli. This comprehensive nutrient and bioactive compound profile represents a useful resource for the evaluation of broccoli by-product utilization in the human diet, and as feedstocks for bioactive compounds for industry.
比较了西兰花(var. italica)花椰菜、茎和叶的植物营养素浓度,以评估茎和叶副产物作为有价值营养素来源的价值。从不同的西兰花组织中定量测定了初级代谢物,包括氨基酸、有机酸和糖,以及硫代葡萄糖苷、类胡萝卜素、叶绿素、维生素 E 和 K、必需矿物质元素、总酚含量、抗氧化活性以及硫代葡萄糖苷生物合成和水解基因的表达。与其他组织相比,西兰花花椰菜的氨基酸、萝卜硫素和新葡萄糖苷的浓度更高,而叶片中的类胡萝卜素、叶绿素、维生素 E 和 K、总酚含量和抗氧化活性更高。与其他组织相比,叶片也是钙和锰的良好来源。与其他组织相比,茎中的芥子油苷形成的腈含量最低。每个组织都表现出特定的核心基因表达谱,支持硫代葡萄糖苷代谢,在花椰菜、茎和叶中表达不同的基因同源物,这表明组织特异性途径可支持西兰花中初级和次级代谢途径的功能。这种全面的营养和生物活性化合物图谱为评估西兰花副产物在人类饮食中的利用以及作为工业生物活性化合物的饲料提供了有用的资源。