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[物种名称]中氧化角鲨烯环化酶基因的全基因组分析:进化、表达及在三萜生物合成中的潜在作用

Genome-Wide Analysis of Oxidosqualene Cyclase Genes in : Evolution, Expression, and Potential Roles in Triterpenoid Biosynthesis.

作者信息

Guo Changfeng, Xu Si, Guo Xiaoyun

机构信息

Guangxi Botanical Garden of Medicinal Plants, Nanning 530012, China.

School of Life Science and Bioengineering, Jining University, Qufu 273155, China.

出版信息

Curr Issues Mol Biol. 2025 Jul 14;47(7):545. doi: 10.3390/cimb47070545.

Abstract

Plant triterpenoids are structurally diverse specialized metabolites with significant ecological, medicinal, and agricultural importance. Oxidosqualene cyclases (OSCs) catalyze the crucial cyclization step in triterpenoid biosynthesis, generating the fundamental carbon skeletons that determine their structural diversity and biological functions. Genome-wide identification of OSC genes was performed using bioinformatics tools, including HMMER and BLASTP, followed by phylogenetic analysis, gene structure analysis, conserved domain and motifs identification, cis-regulatory element prediction, protein-protein interaction analysis, and expression profiling using publicly available transcriptome data from UV-B treated six-week-old seedlings. We identified 24 AaOSC genes, classified into CAS, LAS, LUS, and unknown subfamilies. Phylogenetic analysis revealed evolutionary relationships with OSCs from other plant species. Gene structure analysis showed variations in exon-intron organization. Promoter analysis identified cis-regulatory elements related to light responsiveness, plant growth and development, hormone signaling, and stress response. Expression profiling revealed differential expression patterns of AaOSC genes under UV-B irradiation. This genome-wide characterization provides insights into the evolution and functional diversification of the OSC gene family in . The identified AaOSC genes and their regulatory elements lay the foundation for future studies aimed at manipulating triterpenoid biosynthesis for medicinal and biotechnological applications, particularly focusing on enhancing stress tolerance and artemisinin production.

摘要

植物三萜类化合物是结构多样的特殊代谢产物,在生态、医学和农业方面具有重要意义。氧化鲨烯环化酶(OSC)催化三萜类生物合成中的关键环化步骤,生成决定其结构多样性和生物学功能的基本碳骨架。利用包括HMMER和BLASTP在内的生物信息学工具对OSC基因进行全基因组鉴定,随后进行系统发育分析、基因结构分析、保守结构域和基序鉴定、顺式调控元件预测、蛋白质-蛋白质相互作用分析,并使用来自UV-B处理的六周龄幼苗的公开转录组数据进行表达谱分析。我们鉴定出24个AaOSC基因,分为CAS、LAS、LUS和未知亚家族。系统发育分析揭示了与其他植物物种的OSC的进化关系。基因结构分析显示外显子-内含子组织存在差异。启动子分析鉴定出与光响应、植物生长发育、激素信号传导和应激反应相关的顺式调控元件。表达谱分析揭示了UV-B照射下AaOSC基因的差异表达模式。这种全基因组特征为深入了解该植物中OSC基因家族的进化和功能多样化提供了线索。鉴定出的AaOSC基因及其调控元件为未来旨在操纵三萜类生物合成以用于医学和生物技术应用的研究奠定了基础,特别是专注于提高胁迫耐受性和青蒿素产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efb2/12293385/57d51742a3bf/cimb-47-00545-g006.jpg

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