Modification of Gene Expression Involved in Alkaloid Production in Opium Poppy by VIGS Combined With Pretreatment of Macerozyme Enzyme.

IF 2.3 3区 生物学 Q2 PLANT SCIENCES Plant Direct Pub Date : 2025-01-07 eCollection Date: 2025-01-01 DOI:10.1002/pld3.70034
Deniz Ece Özcan, Deniz Köm, Ozan Doğan, Semiha Erişen, Selma Onarici
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Abstract

Papaver somniferum L., a medicinal plant renowned for its pharmaceutical alkaloids, has captivated scientific interest due to its rich secondary metabolite profile. This study explores a novel approach to manipulating alkaloid biosynthesis pathways by integrating virus-induced gene silencing (VIGS) with macerozyme enzyme pretreatment. Targeting key genes in the benzylisoquinoline alkaloid (BIA) pathway (CODM, T6ODM, COR, DIOX2), the research aimed to elucidate the transformative potential of enzymatic preconditioning in somatic embryo cultures. To address the cell wall barrier, a known limitation in genetic manipulation, macerozyme pretreatment was employed, significantly enhancing gene silencing efficacy. Quantitative reverse transcription PCR analyses revealed significant alterations in gene expression profiles with macerozyme pretreatment, whereas no changes were observed in its absence. The T6ODM + DIOX combination was the most effective, reducing CODM, T6ODM, and DIOX2 expression by 72%, 65%, and 60%, respectively. Conversely, T6ODM expression increased by up to 107% in the CODM treatment. Notably, COR expression displayed dual regulatory dynamics, with suppression (47% decrease in T6ODM + DIOX) and enhancement (49% increase in CODM+DIOX) observed under different conditions. These findings underscore the complex interplay of gene regulation in the morphine biosynthesis pathway. This study highlights the critical role of macerozyme enzymatic pretreatment in overcoming cell wall barriers, enabling effective VIGS applications in somatic suspension cultures. The combination of VIGS and enzymatic pretreatment provides a robust platform for targeted metabolic engineering, offering insights into the regulation of morphine biosynthesis and paving the way for advancements in pharmaceutical alkaloid production and functional genomics in medicinal plants.

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VIGS联合大酶酶预处理对罂粟生物碱生产相关基因表达的修饰
罂粟是一种以其药用生物碱而闻名的药用植物,由于其丰富的次生代谢物而引起了科学界的兴趣。本研究通过整合病毒诱导的基因沉默(VIGS)和巨噬酶预处理,探索了一种操纵生物碱生物合成途径的新方法。针对BIA通路的关键基因(CODM, T6ODM, COR, DIOX2),研究旨在阐明酶预处理在体细胞胚培养中的转化潜力。为了解决细胞壁屏障这一基因操作的已知限制,采用了巨噬酶预处理,显著提高了基因沉默的效果。定量反转录PCR分析显示,巨量酶预处理显著改变了基因表达谱,而没有巨量酶预处理的基因表达谱没有变化。T6ODM + DIOX组合最有效,CODM、T6ODM和DIOX2的表达分别降低72%、65%和60%。相反,在CODM治疗中,T6ODM的表达增加了107%。值得注意的是,在不同的条件下,COR的表达表现出双重调控的动态,分别表现为抑制(T6ODM +DIOX减少47%)和增强(CODM+DIOX增加49%)。这些发现强调了吗啡生物合成途径中基因调控的复杂相互作用。本研究强调了巨酶酶预处理在克服细胞壁屏障方面的关键作用,使VIGS在体细胞悬浮培养中有效应用。VIGS和酶预处理的结合为靶向代谢工程提供了一个强大的平台,为吗啡生物合成的调控提供了见解,并为药用植物生物碱生产和功能基因组学的进步铺平了道路。
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来源期刊
Plant Direct
Plant Direct Environmental Science-Ecology
CiteScore
5.00
自引率
3.30%
发文量
101
审稿时长
14 weeks
期刊介绍: Plant Direct is a monthly, sound science journal for the plant sciences that gives prompt and equal consideration to papers reporting work dealing with a variety of subjects. Topics include but are not limited to genetics, biochemistry, development, cell biology, biotic stress, abiotic stress, genomics, phenomics, bioinformatics, physiology, molecular biology, and evolution. A collaborative journal launched by the American Society of Plant Biologists, the Society for Experimental Biology and Wiley, Plant Direct publishes papers submitted directly to the journal as well as those referred from a select group of the societies’ journals.
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