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首页> 外文期刊>Progress in Artificial Intelligence >Leaves of Invasive Plants-Japanese, Bohemian and Giant Knotweed-The Promising New Source of Flavan-3-ols and Proanthocyanidins
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Leaves of Invasive Plants-Japanese, Bohemian and Giant Knotweed-The Promising New Source of Flavan-3-ols and Proanthocyanidins

机译:侵入性植物的叶子 - 日本,波西米亚和巨型缠结 - 有前途的Flavan-3-Ols和pronantocyanidins的新来源

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摘要

This is the first report on identification of 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 in leaves of Japanese knotweed (Fallopia japonica Houtt.), giant knotweed (Fallopia sachalinensis F. Schmidt) and Bohemian knotweed (Fallopia x bohemica (Chrtek & Chrtkova) J.P. Bailey). Flavan-3-ols and proanthocyanidins were investigated using high performance thin-layer chromatography (HPTLC) coupled to densitometry, image analysis, and mass spectrometry (HPTLC-MS/MS). All species contained (-)-epicatechin and procyanidin B2, while (+)-catechin was only detected in Bohemian and giant knotweed. (-)-Epicatechin gallate, procyanidin B1 and procyanidin C1 was only confirmed in giant knotweed. Leaves of all three knotweeds have the same chemical profiles of proanthocyanidins with respect to the degree of polymerization but differ with respect to gallates. Therefore, chromatographic fingerprint profiles of proanthocyanidins enabled differentiation among leaves of studied knotweeds, and between Japanese knotweed leaves and rhizomes. Leaves of all three species proved to be a rich source of proanthocyanidins (based on the total peak areas), with the highest content in giant and the lowest in Japanese knotweed. The contents of monomers in Japanese, Bohemian and giant knotweed were 0.84 kg/t of dry weight (DW), 1.39 kg/t DW, 2.36 kg/t, respectively, while the contents of dimers were 0.99 kg/t DW, 1.40 kg/t, 2.06 kg/t, respectively. Giant knotweed leaves showed the highest variety of gallates (dimer gallates, dimer digallates, trimer gallates, tetramer gallates, pentamer gallates, and hexamer gallates), while only monomer gallates and dimer gallates were confirmed in Japanese knotweed and monomer gallates, dimer gallates, and dimer digallates were detected in leaves of Bohemian knotweed. The profile of the Bohemian knotweed clearly showed the traits inherited from Japanese and giant knotweed from which it originated.
机译:这是关于鉴定来自单体的所有B型原花青素的第一报告(单体 - 黄烷-3-醇,二聚体,三聚体,四聚体,五聚体,六烷烃,七分体,八氧酮,壬酯和腐烂)和其中一些在日本Knotweed(Fallopia japonica houtt。),巨型Knotweed(Fallopia sachalinensis f. schmidt)和波希米亚knotweed(Fallopia x Bohemica(Chrtek&Chrtkova)JP Bailey)。使用高性能薄层色谱(HPTLC)研究了香兰-3-醇和原花青素,偶联至密度测定法,图像分析和质谱(HPTLC-MS / MS)。所有物种含有( - ) - EpicaTechin和Procyanidin B2,而(+) - 儿茶素仅在波希米亚和巨大的knotweed中检测到。 ( - ) - EPICATECHIN GALLATE,Procyanidin B1和Procyanidin C1仅在巨大的knotweed中确认。所有三个Knotweed的叶子具有相同的原花青素的化学谱相对于聚合程度,但相对于珍宝物而不同。因此,研究了原花青素的色谱指纹谱使叶片的叶片的分化,以及日本的Knotweed叶子和根茎之间。所有三种物种的叶子被证明是金藻蛋白(基于总峰面积)的丰富来源,巨头内含量最高,日本Knotweed最低。日语,波西米亚和巨型缠结的单体的含量分别为0.84kg / t,干重(dw),1.39kg / t dw,2.36kg / t,而二聚体的含量为0.99kg / t dw,1.40kg / t,2.06 kg / t。巨大的Knotweed叶子显示出最多的珍宝品种(二聚体珍宝物,二聚体含量,三聚集剂,四聚珍珠,五聚体珍珠,和六聚集物),而在日本的Knotweed和单体珍宝物中仅确认单体珍宝物和二聚体珍宝物,并且在波希米亚的Knotweed的叶子中检测到二聚体次数。波希米亚的knotweed的轮廓明确显示了从它起源于日本和巨大的缠结的特征。

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