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首页> 外文期刊>Journal of Biotechnology >Differential patterns of dehydroabietic acid biotransformation by Nicotiana tabacum and Catharanthus roseus cells.
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Differential patterns of dehydroabietic acid biotransformation by Nicotiana tabacum and Catharanthus roseus cells.

机译:烟草(Nicotiana tabacum)和玫瑰(Catharanthus roseus)细胞的脱氢松香酸生物转化的差异模式。

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The aim of this study was to use whole cell catalysts as tools for modification of selected resin acids in order to obtain value-added functional derivatives. The enzymatic bioconversion capacities of two plant species were tested towards dehydroabietic acid. Dehydroabietic acid (DHA) is an abundant resin acid in conifers, representing a natural wood protectant. It is also one of the constituents found in by-products of the kraft chemical pulping industry. DHA was fed to tobacco (Nicotiana tabacum) and Madagascar periwinkle (Catharanthus roseus) plant cell and tissue cultures and bioconversion product formation was monitored using NMR analysis. Both plant species took up DHA from culture medium, and various types of typical detoxification processes occurred in both cultures. In addition, diverse responses to DHA treatment were observed, including differences in uptake kinetics, chemical modification of added substrate and changes in overall metabolism of the cells. Interestingly, Catharanthus roseus, a host species for pharmaceutically valuable terpenoid indole alkaloids, exhibited a very different bioconversion pattern for exogenously applied DHA than tobacco, which does not possess a terpenoid indole pathway. In tobacco, DHA is readily glycosylated in the carbonyl group, whereas in periwinkle it is proposed that a cytochrome P450-catalyzed enzymatic detoxification reaction takes place before the formation of glycosylated product.
机译:这项研究的目的是使用全细胞催化剂作为改性所选树脂酸的工具,以获得增值的功能衍生物。测试了两种植物对脱氢松香酸的酶促生物转化能力。脱氢松香酸(DHA)是针叶树中的一种丰富的树脂酸,代表天然的木材保护剂。它也是牛皮纸化学制浆工业副产品中发现的成分之一。将DHA饲喂到烟草(Nicotiana tabacum)和马达加斯加长春花(Catharanthus roseus )植物细胞和组织培养物中,并使用NMR分析监测生物转化产物的形成。两种植物都从培养基中吸收了DHA,两种培养物中都发生了各种类型的典型排毒过程。此外,观察到对DHA处理的多种反应,包括摄取动力学,添加底物的化学修饰以及细胞整体代谢的变化。有趣的是,具有药用价值的萜类吲哚生物碱的寄主品种Catharanthus roseus,与不具有萜类吲哚途径的烟草相比,外源施用的DHA表现出非常不同的生物转化模式。在烟草中,DHA很容易在羰基中被糖基化,而在长春花中,有人提出在形成糖基化产物之前会发生细胞色素P450催化的酶解毒反应。

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