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罂粟中苄基异喹啉生物碱生物合成的基因组和细胞特异性调控

Genomic and cell-specific regulation of benzylisoquinoline alkaloid biosynthesis in opium poppy.

作者信息

Hong Uyen Vu Thuy, Tamiru-Oli Muluneh, Hurgobin Bhavna, Lewsey Mathew G

机构信息

Australian Research Council Research Hub for Medicinal Agriculture, La Trobe University, AgriBio Building, Bundoora, VIC 3086, Australia.

La Trobe Institute for Sustainable Agriculture and Food, Department of Plant, Animal and Soil Sciences, La Trobe University, AgriBio Building, Bundoora, VIC 3086, Australia.

出版信息

J Exp Bot. 2025 Jan 1;76(1):35-51. doi: 10.1093/jxb/erae317.

Abstract

Opium poppy is a crop of great commercial value as a source of several opium alkaloids for the pharmaceutical industries including morphine, codeine, thebaine, noscapine, and papaverine. Most enzymes involved in benzylisoquinoline alkaloid (BIA) biosynthesis in opium poppy have been functionally characterized, and opium poppy currently serves as a model system to study BIA metabolism in plants. BIA biosynthesis in opium poppy involves two biosynthetic gene clusters associated respectively with the morphine and noscapine branches. Recent reports have shown that genes in the same cluster are co-expressed, suggesting they might also be co-regulated. However, the transcriptional regulation of opium poppy BIA biosynthesis is not well studied. Opium poppy BIA biosynthesis involves three cell types associated with the phloem system: companion cells, sieve elements, and laticifers. The transcripts and enzymes associated with BIA biosynthesis are distributed across cell types, requiring the translocation of key enzymes and pathway intermediates between cell types. Together, these suggest that the regulation of BIA biosynthesis in opium poppy is multilayered and complex, involving biochemical, genomic, and physiological mechanisms. In this review, we highlight recent advances in genome sequencing and single cell and spatial transcriptomics with a focus on how these efforts can improve our understanding of the genomic and cell-specific regulation of BIA biosynthesis. Such knowledge is vital for opium poppy genetic improvement and metabolic engineering efforts targeting the modulation of alkaloid yield and composition.

摘要

罂粟是一种具有重大商业价值的作物,作为制药行业多种鸦片生物碱的来源,包括吗啡、可待因、蒂巴因、那可丁和罂粟碱。罂粟中参与苄基异喹啉生物碱(BIA)生物合成的大多数酶已得到功能鉴定,目前罂粟是研究植物中BIA代谢的模型系统。罂粟中的BIA生物合成涉及两个分别与吗啡和那可丁分支相关的生物合成基因簇。最近的报道表明,同一簇中的基因是共表达的,这表明它们也可能受到共调控。然而,罂粟BIA生物合成的转录调控尚未得到充分研究。罂粟BIA生物合成涉及与韧皮部系统相关的三种细胞类型:伴胞、筛管分子和乳汁管。与BIA生物合成相关的转录本和酶分布在不同的细胞类型中,这需要关键酶和途径中间体在细胞类型之间进行转运。综上所述,这些表明罂粟中BIA生物合成的调控是多层次且复杂的,涉及生化、基因组和生理机制。在本综述中,我们重点介绍了基因组测序以及单细胞和空间转录组学的最新进展,重点关注这些研究如何能够增进我们对BIA生物合成的基因组和细胞特异性调控的理解。这些知识对于罂粟的遗传改良以及旨在调节生物碱产量和组成的代谢工程努力至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a74/11659185/a665040ef38f/erae317_fig1.jpg

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