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Chemistry of Color Formation during Rooibos Fermentation

机译:Rooibos发酵过程中颜色形成的化学

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Nonenzymatic oxidative degradation of aspalathin, a dihydrochalcone unique to green rooibos (Aspalathus linearis), resulted in formation of the characteristic red-brown color of processed rooibos tea. As recently reported, two colorless dimers were formed by oxidative coupling. Incubations of aspalathin showed further distinct signals. Isolation by multilayer countercurrent chromatography (MLCCC) followed by preparative high-performance liquid chromatography (HPLC) led to pure substances. Subsequent analysis by NMR and MS techniques identified a third colorless dimeric compound. In addition for the first time, two colored structures with dibenzofuran skeleton, (S)- and (R)-3-(7,9-dihydroxy-2,3-dioxo-6-β-D-glucopyranosyl-3,4-dihydrodibenzo[k,d]furan-4a(2H)-yl) propionic acid, and their corresponding mechanistic precursors were unequivocally established. Color-dilution analysis revealed these compounds as the key chromophores of the incubated aspalathin solutions, ultimately being degraded to unknown, more stable tannin-like structures. Their mechanistic importance to color formation was further underlined by detection of the dibenzofurans also in fermented rooibos tea after trapping with o-phenylenediamine as their corresponding quinoxaline derivatives.
机译:阿斯帕拉汀的非酶氧化降解是绿色如意宝(Aspalathus linearis)独有的二氢查耳酮,导致加工后的如意宝茶具有特征性的红棕色。如最近报道的,通过氧化偶联形成了两个无色二聚体。阿斯帕拉丁的温育显示出进一步不同的信号。通过多层逆流色谱法(MLCCC)分离,然后通过制备型高效液相色谱法(HPLC)分离得到纯净物质。随后通过NMR和MS技术的分析鉴定了第三种无色二聚化合物。此外,首次有两个带有二苯并呋喃骨架的彩色结构,(S)-和(R)-3-(7,9-二羟基-2,3-二氧代-6-β-D-吡喃葡萄糖基-3,4-明确建立了二氢二苯并[k,d]呋喃-4a(2H)-基)丙酸及其相应的机理前体。颜色稀释分析表明,这些化合物是温育阿斯帕林溶液的主要生色团,最终被降解为未知的,更稳定的单宁样结构。通过用邻苯二胺作为相应的喹喔啉衍生物捕集后,在发酵的如意宝茶中也检测到二苯并呋喃,进一步强调了它们对颜色形成的机械重要性。

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