Faculty of Biotechnology, Ho Chi Minh City Open University, Ho Chi Minh City, Vietnam.
Center for Life Science Research, Ho Chi Minh City Open University, Ho Chi Minh City, Vietnam.
Mol Biol Rep. 2024 Nov 27;52(1):20. doi: 10.1007/s11033-024-10118-2.
Panax species, particularly Panax ginseng, Panax quinquefolius, and Panax vietnamensis are renowned for their medicinal properties and economic value. Of these, the endemic P. vietnamensis species (native to Vietnam, Laos, and southern China) is currently receiving focused attention due to its special ginsenosides accumulation in comparison to the others. Recent advances in next-generation sequencing (NGS) technologies have accelerated the molecular genetic studies in this Panax species, providing deeper insights into the ginsenosides biosynthesis pathway as well as other aspects such as genetic diversity and molecular evolution. This work aims to systematically review all studies on the application of NGS in P. vietnamensis, particularly in whole-genome sequencing and transcriptome analysis. These key findings significantly contribute to identifying critical genes involved in ginsenosides biosynthesis, developing various DNA markers (such as SSR and SNP) for molecular genetic studies, and gaining insights into the species' molecular evolution. Based on these findings, future research can further expand to complete the full genomic database of this species and further investigate the underlying regulatory mechanisms of ginsenosides biosynthesis. These efforts will be crucial for enhancing the conservation, molecular breeding, and agricultural productivity of this valuable medicinal species.
人参属植物,特别是人参、西洋参和越南人参,以其药用价值和经济价值而闻名。其中,特有种越南人参(原产于越南、老挝和中国南方)因其与其他品种相比特殊的人参皂甙积累而受到特别关注。新一代测序(NGS)技术的最新进展加速了该种人参的分子遗传学研究,深入了解了人参皂甙生物合成途径以及遗传多样性和分子进化等其他方面。本研究旨在系统综述 NGS 在越南人参中的应用,特别是全基因组测序和转录组分析方面的研究。这些关键发现有助于确定人参皂甙生物合成中涉及的关键基因,开发各种 DNA 标记(如 SSR 和 SNP)用于分子遗传学研究,并深入了解该物种的分子进化。基于这些发现,未来的研究可以进一步扩展到完成该物种的完整基因组数据库,并进一步研究人参皂甙生物合成的潜在调控机制。这些努力对于保护、分子育种和提高这一宝贵药用物种的农业生产力至关重要。