State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources/Guangdong Provincial Key Laboratory of Postharvest Science of Fruit and Vegetables/Engineering Research Center for Postharvest Technology of Horticultural Crops in South China, South China Agricultural University, Guangzhou 510642, China.
College of Life Sciences, South China Agricultural University, Guangzhou 510642, China.
J Agric Food Chem. 2021 Dec 22;69(50):15218-15230. doi: 10.1021/acs.jafc.1c06043. Epub 2021 Dec 10.
Litchi pericarp turns brown rapidly after fruit harvest, while the mechanism remains obscure. The contents of (-)-epicatechin (EC) and procyanidins (PCs) A2/B1/B2/C1 decreased during the pericarp browning, and a previously identified laccase (ADE/LAC) showed activity to these compounds, with brown products observed in the reactions. By UPLC-DAD-QTOF-MS/MS, isomers of dimeric, trimeric, and tetrameric PCs were detected in the EC-ADE/LAC reaction. In the presence of cyanidin-3--rutiside and rutin, anthocyanin-EC and rutin-EC adducts were, respectively, produced, and darker brown precipitation was observed in these reactions relatively to the EC-ADE/LAC reaction alone. ADE/LAC catalyzed the conversion of PC B2 to A-type PC dimers and B-type PC tetramers. / complemented the transparent testa of LAC15-loss-of-function mutant () to wild-type dark brown seed coat. The results demonstrated that ADE/LAC-mediated flavonoid polymerization played an important role in the browning of pericarp.
荔枝果皮在果实收获后迅速变褐,但其机制尚不清楚。在果皮褐变过程中,(-)-表儿茶素(EC)和原花青素(PCs)A2/B1/B2/C1 的含量下降,先前鉴定的漆酶(ADE/LAC)对这些化合物表现出活性,并在反应中观察到褐色产物。通过 UPLC-DAD-QTOF-MS/MS,在 EC-ADE/LAC 反应中检测到二聚体、三聚体和四聚体 PCs 的异构体。在矢车菊素-3-芸香糖苷和芦丁存在的情况下,分别生成了花色苷-EC 和芦丁-EC 加合物,与单独的 EC-ADE/LAC 反应相比,这些反应中观察到更深的棕色沉淀。ADE/LAC 催化 PC B2 向 A 型 PC 二聚体和 B 型 PC 四聚体的转化。/补充了 LAC15 功能丧失突变体()的透明种皮为野生型深褐色种皮。结果表明,ADE/LAC 介导的类黄酮聚合在果皮褐变中起重要作用。