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生物碱代谢途径中的基因聚类和拷贝数变异。

Gene clustering and copy number variation in alkaloid metabolic pathways of opium poppy.

机构信息

Department of Biological Sciences, University of Calgary, Calgary, Alberta, T2N 1N4, Canada.

Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, China.

出版信息

Nat Commun. 2020 Mar 4;11(1):1190. doi: 10.1038/s41467-020-15040-2.

Abstract

Genes in plant secondary metabolic pathways enable biosynthesis of a range of medically and industrially important compounds, and are often clustered on chromosomes. Here, we study genomic clustering in the benzylisoquinoline alkaloid (BIA) pathway in opium poppy (Papaver somniferum), exploring relationships between gene expression, copy number variation, and metabolite production. We use Hi-C to improve the existing draft genome assembly, yielding chromosome-scale scaffolds that include 35 previously unanchored BIA genes. We find that co-expression of BIA genes increases within clusters and identify candidates with unknown function based on clustering and covariation in expression and alkaloid production. Copy number variation in critical BIA genes correlates with stark differences in alkaloid production, linking noscapine production with an 11-gene deletion, and increased thebaine/decreased morphine production with deletion of a T6ODM cluster. Our results show that the opium poppy genome is still dynamically evolving in ways that contribute to medically and industrially important phenotypes.

摘要

植物次生代谢途径中的基因能够生物合成一系列具有医学和工业重要性的化合物,这些基因通常在染色体上聚集。在这里,我们研究了罂粟(Papaver somniferum)中苯并异喹啉生物碱(BIA)途径的基因组聚类,探索了基因表达、拷贝数变异和代谢产物产生之间的关系。我们使用 Hi-C 来改进现有的基因组草案组装,得到了包括 35 个以前未锚定的 BIA 基因的染色体规模支架。我们发现,BIA 基因在聚类内的共表达增加,并根据聚类和表达及生物碱产生的共变,确定了具有未知功能的候选基因。关键 BIA 基因的拷贝数变异与生物碱产生的明显差异相关,将罂粟碱的产生与 11 个基因缺失相关联,并与 T6ODM 簇的缺失导致的可待因/吗啡产量增加相关联。我们的结果表明,罂粟基因组仍在以对医学和工业重要表型有贡献的方式动态进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca1a/7055283/c2b879bc8328/41467_2020_15040_Fig1_HTML.jpg

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