首页> 外文期刊>Journal of Agricultural and Food Chemistry >Biosynthesis and catabolism of caffeine in low-caffeine-containing species of Coffea.
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Biosynthesis and catabolism of caffeine in low-caffeine-containing species of Coffea.

机译:低咖啡因含量的咖啡因中咖啡因的生物合成和分解代谢。

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Leaves of Coffea salvatrix, Coffea eugenioides, and C. bengalensis contain approximately 3-7-fold lower levels of caffeine than those of Coffea arabica. There was more extensive biosynthesis of caffeine from [8-(14)C]adenine in young leaves of C. arabica than in C. salvatrix, C. eugenioides, and C. bengalensis. Degradation of [8-(14)C]caffeine, which is negligible in leaves of C. arabica, was also very slow in C.salvatrix and C. bengalensis. In contrast, [8-(14)C]caffeine was catabolized rapidly by young and mature leaves of C. eugenioides primarily by a caffeine --> theophylline --> 3-methylxanthine --> xanthine --> uric acid --> allantoin --> allantoic acid --> urea --> CO(2) + NH(3) pathway. These results indicate that the low caffeine accumulation in C. salvatrix, C. eugenioides, and C. bengalensis is a consequence of a slow rate of caffeine biosynthesis, whereas rapid degradation of caffeine also contributes to the low endogenous caffeine pool in C. eugenioides. The genes that regulate caffeine accumulation appear to be those encoding N-methyltransferase and caffeine (7-N) demethylase activities. The diversity of caffeine catabolism observed in C. arabica, C. salvatrix, C. eugenioides, and C. bengalensis, other species of Coffea, and Camellia sinensis is discussed.
机译:Salvatrix咖啡,eugenioides咖啡和孟加拉棉C.的叶子所含咖啡因的含量比阿拉伯咖啡低约3-7倍。比起C. salvatrix,C。eugenioides和C. bengalensis,从[8-(14)C]腺嘌呤中合成咖啡因的生物活性更高。 [8-(14)C]咖啡因的降解在阿拉伯C.salvatrix和孟加拉C.salvatrix中也很缓慢,在阿拉伯茶中的叶子可忽略不计。相比之下,[8-(14)C]咖啡因主要由咖啡因->茶碱-> 3-甲基黄嘌呤->黄嘌呤->尿酸->被伞形梭菌的幼叶和成熟叶迅速分解代谢。尿囊素->尿囊酸->尿素-> CO(2)+ NH(3)途径。这些结果表明,咖啡因中的咖啡因积累较低,这是咖啡因生物合成速率降低的结果,而咖啡因的快速降解也导致了咖啡因中的内源性咖啡因库较低。调节咖啡因积累的基因似乎是编码N-甲基转移酶和咖啡因(7-N)脱甲基酶活性的基因。讨论了咖啡因分解代谢的多样性,在阿拉伯咖啡,C。salvatrix,C。eugenioides和C. bengalensis,其他咖啡和山茶中观察到。

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