College of Life and Environmental Sciences , Minzu University of China , 27 Zhong-Guan-Cun South Avenue , Haidian, Beijing 100081 , People's Republic of China.
Macaulay Honors College , City University of New York , 35 West 67th Street , New York City , New York 10023 , United States.
J Agric Food Chem. 2019 Feb 6;67(5):1585-1597. doi: 10.1021/acs.jafc.8b04035. Epub 2019 Jan 24.
Acer truncatum is an important ornamental, edible, and medicinal plant resource in China. Previous phytochemical research has focused on the leaf (AL) due to its long history as a tea for health. Other parts such as the branch (ABr), bark (ABa), fruit (AF), and root (AR) have drawn little attention regarding their metabolites and bioactivities. The strategy of an in-house chemical library combined with Progenesis QI informatics platform was applied to characterize the metabolites. A total of 98 compounds were characterized or tentatively identified, including 63 compounds reported from this species for the first time. Principal component analysis showed the close clustering of ABr, ABa, and AR, indicating that they share similar chemical components, while AL and AF clustered more distantly. By multiple orthogonal partial least-squares discriminant analyses (OPLS-DA), 52 compounds were identified as potential marker compounds differentiating these different plant parts. The variable influence on projection score from OPLS-DA revealed that catechin, procyanidins B2 or B3, and procyanidins C1 or C2 are the significant metabolites in ABa extracts, which likely contribute to its antioxidant and cytotoxic activities.
中国的 Acer truncatum 是一种重要的观赏、食用和药用植物资源。由于其作为健康茶的悠久历史,以前的植物化学研究主要集中在叶子 (AL) 上。其他部分,如枝条 (ABr)、树皮 (ABa)、果实 (AF) 和根 (AR),其代谢物和生物活性却很少受到关注。应用内部化学文库与 Progenesis QI 信息学平台相结合的策略来对代谢物进行特征分析。共鉴定出 98 种化合物,其中包括 63 种首次从该种植物中鉴定出的化合物。主成分分析表明 ABr、ABa 和 AR 聚类紧密,表明它们具有相似的化学成分,而 AL 和 AF 聚类更为分散。通过多正交偏最小二乘判别分析(OPLS-DA),鉴定出 52 种化合物为区分这些不同植物部位的潜在标记化合物。OPLS-DA 的投影得分变量影响揭示了儿茶素、原花青素 B2 或 B3 以及原花青素 C1 或 C2 是 ABa 提取物中的重要代谢物,可能对其抗氧化和细胞毒性活性有贡献。