Mahima Karthikeyan, Sunil Kumar Koppala Narayana, Rakhesh Kanakarajan Vijayakumari, Rajeswaran Parameswaran Sathiya, Sharma Ashutosh, Sathishkumar Ramalingam
Plant Genetic Engineering Laboratory, Department of Biotechnology, Bharathiar University, Coimbatore, Tamil Nadu, India.
Department of Pharmacognosy, Siddha Central Research Institute, Chennai, Tamil Nadu, India.
Front Pharmacol. 2022 Oct 21;13:947512. doi: 10.3389/fphar.2022.947512. eCollection 2022.
The past couple of decades have witnessed the global resurgence of medicinal plants in the field of herbal-based health care. Increased consumption of medicinal plants and their derivative products is the major cause of the adulteration issues in herbal industries. As a result, the quality of herbal products is affected by spurious and unauthorized raw materials. Recent development in molecular plant identification using DNA barcodes has become a robust methodology to identify and authenticate the adulterants in herbal samples. Hence, rapid and accurate identification of medicinal plants is the key to success for the herbal industry. Aim of the study: This paper provides a comprehensive review of the application of DNA barcoding and advanced technologies that have emerged over the past 10 years related to medicinal plant identification and authentication and the future prospects of this technology. Information on DNA barcodes was compiled from scientific databases (Google Scholar, Web of Science, SciFinder and PubMed). Additional information was obtained from books, Ph.D. thesis and MSc. Dissertations. Working out an appropriate DNA barcode for plants is challenging; the single locus-based DNA barcodes (, ITS, ITS2, ) to multi-locus DNA barcodes have become the successful species-level identification among herbal plants. Additionally, multi-loci have become efficient in the authentication of herbal products. Emerging advances in DNA barcoding and related technologies such as next-generation sequencing, high-resolution melting curve analysis, meta barcodes and mini barcodes have paved the way for successful herbal plant/samples identification. DNA barcoding needs to be employed together with other techniques to check and rationally and effectively quality control the herbal drugs. It is suggested that DNA barcoding techniques combined with metabolomics, transcriptomics, and proteomics could authenticate the herbal products. The invention of simple, cost-effective and improved DNA barcoding techniques to identify herbal drugs and their associated products of medicinal value in a fool-proof manner will be the future thrust of Pharmacopoeial monograph development for herbal drugs.
在过去几十年里,药用植物在基于草药的医疗保健领域出现了全球复兴。药用植物及其衍生产品消费量的增加是草药行业掺假问题的主要原因。因此,草药产品的质量受到假冒和未经授权的原材料的影响。利用DNA条形码进行分子植物鉴定的最新进展已成为鉴定和验证草药样品中掺假物的有力方法。因此,快速准确地鉴定药用植物是草药行业成功的关键。研究目的:本文全面综述了DNA条形码技术以及过去10年中出现的与药用植物鉴定和验证相关的先进技术及其未来前景。从科学数据库(谷歌学术、科学网、SciFinder和PubMed)收集了有关DNA条形码的信息。另外还从书籍、博士论文和硕士论文中获取了相关信息。为植物确定合适的DNA条形码具有挑战性;从基于单一位点的DNA条形码(如ITS、ITS2等)到多位点DNA条形码已成为草药植物物种水平鉴定的成功方法。此外,多位点在草药产品的验证方面也变得更加有效。DNA条形码技术以及下一代测序、高分辨率熔解曲线分析、元条形码和微型条形码等相关技术的新进展为成功鉴定草药植物/样品铺平了道路。DNA条形码技术需要与其他技术一起使用,以合理有效地对草药进行质量控制。建议将DNA条形码技术与代谢组学、转录组学和蛋白质组学相结合,以验证草药产品。发明简单、经济高效且经过改进的DNA条形码技术,以万无一失的方式鉴定草药及其具有药用价值的相关产品,将是未来草药药典专论发展的重点。