首页> 外文期刊>Current opinion in biotechnology >Gene clustering in plant specialized metabolism. (Special Issue: Food Biotechnology (edited by Koffas, M. A. G. & Marienhagen, J.) and Plant Biotechnology (edited by Moller, B. L. & Ratcliffe, R. G.).)
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Gene clustering in plant specialized metabolism. (Special Issue: Food Biotechnology (edited by Koffas, M. A. G. & Marienhagen, J.) and Plant Biotechnology (edited by Moller, B. L. & Ratcliffe, R. G.).)

机译:植物专业代谢中的基因聚类。 (特刊:食品生物技术(由Koffas,M. A. G.和Marienhagen,J.编辑)和植物生物技术(由Moller,B. L.&Ratcliffe,R. G.编辑)。)

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摘要

Physically linked clusters of genes that encode the enzymatic information for the synthesis of specialized metabolites are a well-established feature of microbial secondary metabolism. In contrast, the biosynthesis of plant specialized metabolites has until recently been thought to be almost exclusively encoded by genes that are randomly scattered in the genome. However, recent reports highlight the growing number of examples of gene clusters for specialized metabolic pathways in plants. Numerous gene clusters that encode for the biosynthesis of different classes of metabolite have now been discovered in a variety of plant species. Comparison of these characterized clusters now enables us to begin to define their salient features and to exploit plant biosynthetic gene clusters for synthetic biology applications.
机译:编码专门合成代谢产物的酶信息的基因的物理链接簇是微生物次级代谢的公认特征。相反,直到最近,植物专用代谢产物的生物合成几乎都被随机散布在基因组中的基因编码。然而,最近的报道强调了用于植物中专门代谢途径的基因簇的例子越来越多。现在已经在多种植物物种中发现了许多编码不同类别代谢物生物合成的基因簇。现在,通过比较这些特征化的簇,我们可以开始定义它们的显着特征,并利用植物生物合成基因簇进行合成生物学应用。

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