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大麻色烯酰基转移酶 1 和 4 启动子活性的激素调控及水杨酸介导的大麻素生物合成调控。

Hormonal control of promoter activities of Cannabis sativa prenyltransferase 1 and 4 and salicylic acid mediated regulation of cannabinoid biosynthesis.

机构信息

Department of Plant Science and Landscape Architecture, Agricultural Biotechnology Laboratory, University of Connecticut, Storrs, CT, 06269-4163, USA.

SafeTiva Labs, Westfield, MA, 01085, USA.

出版信息

Sci Rep. 2023 May 27;13(1):8620. doi: 10.1038/s41598-023-35303-4.

Abstract

Cannabis sativa aromatic prenyltransferase 4 (CsPT4) and 1 (CsPT1) have been shown to catalyze cannabigerolic acid (CBGA) biosynthesis, a step that rate-limits the cannabinoid biosynthetic pathway; both genes are highly expressed in flowers. CsPT4 and CsPT1 promoter driven β-glucuronidase (GUS) activities were detected in leaves of cannabis seedlings, and strong CsPT4 promoter activities were associated with glandular trichomes. Hormonal regulation of cannabinoid biosynthetic genes is poorly understood. An in silico analysis of the promoters identified putative hormone responsive elements. Our work examines hormone-responsive elements in the promoters of CsPT4 and CsPT1 in the context of physiological responses of the pathway to the hormone in planta. Dual luciferase assays confirmed the regulation of promoter activities by the hormones. Further studies with salicylic acid (SA) demonstrated that SA pretreatment increased the expression of genes located downstream of the cannabinoid biosynthetic pathway. The results from all aspects of this study demonstrated an interaction between certain hormones and cannabinoid synthesis. The work provides information relevant to plant biology, as we present evidence demonstrating correlations between molecular mechanisms that regulate gene expression and influence plant chemotypes.

摘要

大麻素芳香萜烯转移酶 4(CsPT4)和 1(CsPT1)已被证明能催化大麻素酸(CBGA)的生物合成,这是大麻素生物合成途径中的限速步骤;这两个基因在花中高度表达。在大麻幼苗的叶片中检测到 CsPT4 和 CsPT1 启动子驱动的β-葡萄糖醛酸酶(GUS)活性,并且 CsPT4 启动子具有很强的活性与腺毛有关。对大麻素生物合成基因的激素调节知之甚少。对启动子的计算机分析确定了可能的激素反应元件。我们的工作研究了 CsPT4 和 CsPT1 启动子中激素反应元件在该途径对植物中激素的生理反应中的作用。双荧光素酶测定证实了激素对启动子活性的调节。用水杨酸(SA)进行的进一步研究表明,SA 预处理增加了位于大麻素生物合成途径下游的基因的表达。本研究的所有方面的结果都表明某些激素与大麻素合成之间存在相互作用。这项工作提供了与植物生物学相关的信息,因为我们提供了证据证明调节基因表达的分子机制与影响植物化学型之间存在相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b286/10224980/0b669506203c/41598_2023_35303_Fig1_HTML.jpg

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