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Improvement of hairy root cultures and plants by changing biosynthetic pathways leading to pharmaceutical metabolites: Strategies and applications

机译:通过改变导致药物代谢的生物合成途径改善毛状根培养物和植物:策略和应用

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A plethora of bioactive plant metabolites has been explored for pharmaceutical, food chemistry and agricultural applications. The chemical synthesis of these structures is often difficult, so plants are favorably used as producers. While whole plants can serve as a source for secondary metabolites and can be also improved by metabolic engineering, more often cell or organ cultures of relevant plant species are of interest. It should be noted that only in few cases the production for commercial application in such cultures has been achieved. Their genetic manipulation is sometimes faster and the production of a specific metabolite is more reliable, because of less environmental influences. In addition, upscaling in bioreactors is nowadays possible for many of these cultures, so some are already used in industry. There are approaches to alter the profile of metabolites not only by using plant genes, but also by using bacterial genes encoding modifying enzymes. Also, strategies to cope with unwanted or even toxic compounds are available. The need for metabolic engineering of plant secondary metabolite pathways is increasing with the rising demand for (novel) compounds with new bioactive properties. Here, we give some examples of recent developments for the metabolic engineering of plants and organ cultures, which can be used in the production of metabolites with interesting properties
机译:已经探索了许多具有生物活性的植物代谢物,可用于制药,食品化学和农业应用。这些结构的化学合成通常是困难的,因此植物被有利地用作生产者。虽然整株植物可以用作次生代谢产物的来源,也可以通过代谢工程加以改善,但更有趣的是相关植物物种的细胞或器官培养。应当指出的是,仅在少数情况下已经实现了在这种文化中用于商业应用的生产。由于较少的环境影响,它们的基因操作有时会更快,并且特定代谢产物的产生更可靠。此外,如今对于许多此类培养物而言,生物反应器的升级是可能的,因此其中一些已经在工业中使用。存在不仅通过使用植物基因,而且通过使用编码修饰酶的细菌基因来改变代谢物谱的方法。而且,有应对不想要的甚至有毒化合物的策略。随着对具有新的生物活性特性的(新型)化合物的需求增加,对植物次生代谢途径的代谢工程的需求也越来越大。在此,我们列举一些植物和器官培养物代谢工程的最新进展实例,这些新进展可用于生产具有有趣特性的代谢产物

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