Bensa Maja, Glavnik Vesna, Vovk Irena
Laboratory for Food Chemistry, National Institute of Chemistry, Hajdrihova 19, SI-1000 Ljubljana, Slovenia.
Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, SI-1000 Ljubljana, Slovenia.
Plants (Basel). 2021 Feb 20;10(2):402. doi: 10.3390/plants10020402.
Flavan-3-ols and proanthocyanidins of invasive alien plants Japanese knotweed ( Houtt.), giant knotweed ( F. Schmidt) and Bohemian knotweed ( × (Chrtek & Chrtkova) J.P. Bailey) were investigated using high performance thin-layer chromatography (HPTLC) coupled to densitometry, image analysis and mass spectrometry (HPTLC-MS/MS). (+)-Catechin, (-)-epicatechin, (-)-epicatechin gallate and procyanidin B2 were found in rhizomes of these three species, and for the first time in Bohemian knotweed. (-)-Epicatechin gallate, procyanidin B1, procyanidin B2 and procyanidin C1 were found in giant knotweed rhizomes for the first time. Rhizomes of Bohemian and giant knotweed have the same chemical profiles of proanthocyanidins with respect to the degree of polymerization and with respect to gallates. Japanese and Bohemian knotweed have equal chromatographic fingerprint profiles with the additional peak not present in giant knotweed. Within the individual species giant knotweed rhizomes and leaves have the most similar fingerprints, while the fingerprints of Japanese and Bohemian knotweed rhizomes have additional peaks not found in leaves. Rhizomes of all three species proved to be a rich source of proanthocyanidins, with the highest content in Japanese and the lowest in Bohemian knotweed (based on the total peak areas). The contents of monomers in Japanese, Bohemian and giant knotweed rhizomes were 2.99 kg/t of dry mass (DM), 1.52 kg/t DM, 2.36 kg/t DM, respectively, while the contents of dimers were 2.81 kg/t DM, 1.09 kg/t DM, 2.17 kg/t DM, respectively. All B-type proanthocyanidins from monomers to decamers (monomers-flavan-3-ols, dimers, trimers, tetramers, pentamers, hexamers, heptamers, octamers, nonamers and decamers) and some of their gallates (monomer gallates, dimer gallates, dimer digallates, trimer gallates, tetramer gallates, pentamer gallates and hexamer gallates) were identified in rhizomes of Bohemian knotweed and giant knotweed. Pentamer gallates, hexamers, hexamer gallates, nonamers and decamers were identified for the first time in this study in Bohemian and giant knotweed rhizomes.
利用高效薄层色谱(HPTLC)结合密度测定法、图像分析和质谱法(HPTLC-MS/MS),对入侵外来植物虎杖(Houtt.)、大虎杖(F. Schmidt)和波希米亚虎杖(× (Chrtek & Chrtkova) J.P. Bailey)中的黄烷-3-醇和原花青素进行了研究。在这三个物种的根茎中均发现了(+)-儿茶素、(-)-表儿茶素、(-)-表儿茶素没食子酸酯和原花青素B2,在波希米亚虎杖中为首次发现。(-)-表儿茶素没食子酸酯、原花青素B1、原花青素B2和原花青素C1在大虎杖根茎中为首次发现。波希米亚虎杖和大虎杖根茎中原花青素的化学组成在聚合度和没食子酸酯方面具有相同特征。虎杖和波希米亚虎杖具有相同的色谱指纹图谱,而大虎杖中不存在额外的峰。在各个物种中,大虎杖的根茎和叶子指纹图谱最为相似,而虎杖和波希米亚虎杖根茎的指纹图谱中有叶子中未发现的额外峰。所有三个物种的根茎均被证明是原花青素的丰富来源,其中虎杖中的含量最高,波希米亚虎杖中的含量最低(基于总峰面积)。虎杖、波希米亚虎杖和大虎杖根茎中单体的含量分别为2.99 kg/t干质量(DM)、1.52 kg/t DM、2.36 kg/t DM,二聚体的含量分别为2.81 kg/t DM、1.09 kg/t DM、2.17 kg/t DM。在波希米亚虎杖和大虎杖根茎中鉴定出了从单体到十聚体的所有B型原花青素(单体-黄烷-3-醇、二聚体、三聚体、四聚体、五聚体、六聚体、七聚体、八聚体、九聚体和十聚体)及其一些没食子酸酯(单体没食子酸酯、二聚体没食子酸酯、二聚体二没食子酸酯、三聚体没食子酸酯、四聚体没食子酸酯、五聚体没食子酸酯和六聚体没食子酸酯)。在本研究中,五聚体没食子酸酯、六聚体、六聚体没食子酸酯、九聚体和十聚体在波希米亚虎杖和大虎杖根茎中为首次鉴定。