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长春花(Catharanthus roseus (L.) G. Don)的生物技术进展。

Biotechnological advancements in Catharanthus roseus (L.) G. Don.

机构信息

Crop Research Unit (Genetics and Plant Breeding), Bidhan Chandra Krishi Viswavidyalaya, Mohanpur, Nadia, West Bengal, 741252, India.

出版信息

Appl Microbiol Biotechnol. 2020 Jun;104(11):4811-4835. doi: 10.1007/s00253-020-10592-1. Epub 2020 Apr 17.

Abstract

Catharanthus roseus (L.) G. Don, also known as Madagascar periwinkle or Sadabahar, is a herbaceous plant belonging to the family Apocynaceae. Being a reservoir for more than 200 alkaloids, it reserves a place for itself in the list of important medicinal plants. Secondary metabolites are present in its leaves (e.g., vindoline, vinblastine, catharanthine, and vincristine) as well as basal stem and roots (e.g., ajmalicine, reserpine, serpentine, horhammericine, tabersonine, leurosine, catharanthine, lochnerine, and vindoline). Two of its alkaloids, vincristine and vinblastine (possessing anticancerous properties), are being used copiously in pharmaceutical industries. Till date, arrays of reports are available on in vitro biotechnological improvements of C. roseus. The present review article concentrates chiefly on various biotechnological advancements based on plant tissue culture techniques of the last three decades, for instance, regeneration via direct and indirect organogenesis, somatic embryogenesis, secondary metabolite production, synthetic seed production, clonal fidelity assessment, polyploidization, genetic transformation, and nanotechnology. It also portrays the importance of various factors influencing the success of in vitro biotechnological interventions in Catharanthus and further addresses several shortcomings that can be further explored to create a platform for upcoming innovative approaches. KEY POINTS: • C. roseus yields anticancerous vincristine and vinblastine used in pharma industry. •In vitro biotechnological interventions prompted major genetic advancements. • This review provides an insight on in vitro-based research achievements till date. • Key bottlenecks and prospective research methodologies have been identified herein.

摘要

长春花(L.)G. Don,也被称为马达加斯加长春花或 Sadabahar,是一种属于夹竹桃科的草本植物。作为 200 多种生物碱的储库,它在重要药用植物名单中占有一席之地。它的叶子(如长春碱、长春新碱、长春质碱和长春瑞滨)以及基茎和根(如阿马碱、利血平、蛇根碱、霍哈马林碱、塔博森宁、勒乌索宁、长春质碱、洛赫纳宁和长春碱)中都存在次生代谢物。其两种生物碱,长春新碱和长春碱(具有抗癌特性),在制药工业中大量使用。迄今为止,已有大量关于长春花的体外生物技术改进的报告。本文主要集中在过去三十年基于植物组织培养技术的各种生物技术进展,例如通过直接和间接器官发生、体细胞胚胎发生、次生代谢产物生产、人工种子生产、无性系保真度评估、多倍体化、遗传转化和纳米技术进行再生。它还描述了影响长春花体外生物技术干预成功的各种因素的重要性,并进一步解决了几个可以进一步探索的缺点,以创建一个即将到来的创新方法的平台。 要点: • 长春花产生用于制药行业的抗癌长春新碱和长春碱。 • 体外生物技术干预促使主要遗传进展。 • 本综述提供了迄今为止基于体外的研究成果的见解。 • 本文在此确定了关键的瓶颈和未来的研究方法。

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