首页> 外文期刊>The Plant Cell >Modularity of plant metabolic gene clusters: a trio of linked genes that are collectively required for acylation of triterpenes in oat.
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Modularity of plant metabolic gene clusters: a trio of linked genes that are collectively required for acylation of triterpenes in oat.

机译:植物代谢基因簇的模块性:燕麦中三萜烯酰化共同需要的三个连锁基因。

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摘要

Operon-like gene clusters are an emerging phenomenon in the field of plant natural products. The genes encoding some of the best-characterized plant secondary metabolite biosynthetic pathways are scattered across plant genomes. However, an increasing number of gene clusters encoding the synthesis of diverse natural products have recently been reported in plant genomes. These clusters have arisen through the neo-functionalization and relocation of existing genes within the genome, and not by horizontal gene transfer from microbes. The reasons for clustering are not yet clear, although this form of gene organization is likely to facilitate co-inheritance and co-regulation. Oats (Avena spp) synthesize antimicrobial triterpenoids (avenacins) that provide protection against disease. The synthesis of these compounds is encoded by a gene cluster. Here we show that a module of three adjacent genes within the wider biosynthetic gene cluster is required for avenacin acylation. Through the characterization of these genes and their encoded proteins we present a model of the subcellular organization of triterpenoid biosynthesis.
机译:像Operon的基因簇是植物天然产物领域中的一种新兴现象。编码一些最典型的植物次生代谢产物生物合成途径的基因分散在整个植物基因组中。然而,最近在植物基因组中报道了编码多种天然产物合成的越来越多的基因簇。这些簇是通过基因组内现有基因的新功能化和重新定位而不是通过微生物的水平基因转移而产生的。聚类的原因尚不清楚,尽管这种形式的基因组织可能会促进共同遗传和共同调控。燕麦(Avena spp)合成抗菌三萜类化合物(avenacins),以提供防病保护。这些化合物的合成由基因簇编码。在这里,我们显示了在更广泛的生物合成基因簇内的三个相邻基因的模块是阿文酸酰化所必需的。通过这些基因及其编码的蛋白质的表征,我们提出了三萜类生物合成的亚细胞组织模型。

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