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The opium poppy genome and morphinan production

机译:罂粟基因组和吗啡生产

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Morphinan-based painkillers are derived from opium poppy (Papaver somniferum L.). We report a draft of the opium poppy genome, with 2.72 gigabases assembled into 11 chromosomes with contig N50 and scaffold N50 of 1.77 and 204 megabases, respectively. Synteny analysis suggests a whole-genome duplication at similar to 7.8 million years ago and ancient segmental or whole-genome duplication(s) that occurred before the Papaveraceae-Ranunculaceae divergence 110 million years ago. Syntenic blocks representative of phthalide isoquinoline and morphinan components of a benzylisoquinoline alkaloid cluster of 15 genes provide insight into how this cluster evolved. Paralog analysis identified P450 and oxidoreductase genes that combined to form the STORR gene fusion essential for morphinan biosynthesis in opium poppy. Thus, gene duplication, rearrangement, and fusion events have led to evolution of specialized metabolic products in opium poppy.
机译:基于吗啡聚糖的止痛药来源于罂粟(罂粟)。我们报告了一个罂粟罂粟基因组的草稿,其中2.72个千兆糖酶被组装成11个染色体,分别具有重叠群N50和支架N50,分别为1.77和204兆碱基。 Synteny分析表明,全基因组重复与780万年前相似,而古老的节段或全基因组重复发生于1.1亿年前罂粟科-毛ace科发散之前。代表15种基因的苄基异喹啉生物碱簇的邻苯二甲醚异喹啉和吗啡喃成分的同构嵌段提供了对该簇如何进化的见解。旁系同源分析确定了P450和氧化还原酶基因,这些基因结合在一起形成了STORR基因融合体,是鸦片罂粟中吗啡喃生物合成所必需的。因此,基因复制,重排和融合事件导致了罂粟中特殊代谢产物的进化。

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