Furumoto Toshio, Sato Ryuta
a Faculty of Agriculture, Department of Applied Biological Science , Kagawa University , Kagawa , Japan.
Biosci Biotechnol Biochem. 2017 Oct;81(10):1868-1873. doi: 10.1080/09168451.2017.1362974. Epub 2017 Aug 16.
In order to investigate the intermediacy of 2-(4-methylpent-3-en-1-yl)anthraquinone (MPAQ), a possible intermediate for the biosynthesis of anthraquinone derivatives in sesame (Sesamum indicum), H-labeled MPAQ was administered to a hairy root culture of S. indicum. Efficient conversion of fed MPAQ to 2-[(Z)-4-methylpenta-1,3-dien-1-yl]anthraquinone ((Z)-MPDEAQ) was observed. Furthermore, administration experiment with H-labeled 2-geranyl-1,4-naphthohydroquinone, another possible intermediate, showed that it was converted to MPAQ and (Z)-MPDEAQ. The results clearly demonstrated that these substrates are the actual precursors for the production of (Z)-MPDEAQ. In contrast, neither MPAQ nor 2-geranyl-1,4-naphthohydroquinone was converted to anthrasesamone B and 2,3-epoxyanthrasesamone B, other anthraquinone derivatives in the hairy roots, suggesting that these substrates may not be the common precursors in the biosynthesis of anthraquinone derivatives.
为了研究2-(4-甲基戊-3-烯-1-基)蒽醌(MPAQ)(芝麻(Sesamum indicum)中蒽醌衍生物生物合成的一种可能中间体)的中间作用,将H标记的MPAQ施用于芝麻的毛状根培养物中。观察到所饲喂的MPAQ高效转化为2-[(Z)-4-甲基戊-1,3-二烯-1-基]蒽醌((Z)-MPDEAQ)。此外,用H标记的另一种可能中间体2-香叶基-1,4-萘氢醌进行的施用实验表明,它可转化为MPAQ和(Z)-MPDEAQ。结果清楚地表明,这些底物是生成(Z)-MPDEAQ的实际前体。相比之下,MPAQ和2-香叶基-1,4-萘氢醌均未转化为毛状根中的其他蒽醌衍生物蒽芝麻素B和2,3-环氧蒽芝麻素B,这表明这些底物可能不是蒽醌衍生物生物合成中的共同前体。