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紫葳科植物翅荚决明:体外生物技术干预与展望。

Woodfordia fruticosa (L.) Kurz: in vitro biotechnological interventions and perspectives.

机构信息

Department of Biotechnology, Telangana University, Dichpally, Nizamabad, Telangana, 503322, India.

Agri Biotech Foundation, Agricultural University Campus, Rajendranagar, Hyderabad, 500030, Telangana, India.

出版信息

Appl Microbiol Biotechnol. 2023 Oct;107(19):5855-5871. doi: 10.1007/s00253-023-12695-x. Epub 2023 Jul 31.

Abstract

Woodfordia fruticosa (L.) Kurz is a woody medicinal shrub (Lythraceae) commonly known as the "fire flame bush." W. fruticosa plant parts either alone or whole plant have a long history of recommended use in the Indian medicine systems of Ayurveda, Unani, and Siddha (AUS). This plant is prominently known for its pharmacological properties, viz., antimicrobial, anti-inflammatory, anti-peptic ulcer, hepatoprotective, immunomodulatory, antitumor, cardioprotective, analgesic, and wound healing activities. Its important phyto-constituents, woodfordin C, woodfordin I, oenothein B, and isoschimacoalin-A, exhibit in vitro or in vivo physiological activities beneficial to human health. As the plant is a rich storehouse of phyto-constituents, it is indiscriminately used in its wild habitats. Moreover, due to very poor seed viability and difficult-to-root qualities, it is placed under IUCN list of endangered plant species. For W. fruticosa, biomass production or to its conservation by in vitro regeneration is the best feasible alternative. Till date, only few important in vitro regeneration methods are reported in W. fruticosa. ISSR molecular markers based clonal fidelity and Agrobacterium-mediated transformation has been demonstrated, indicating that W. fruticosa is amenable to genetic manipulation and genome editing studies. This review presents concise summary of updated reports on W. fruticosa phyto-constituents and their biological activities, while a critical appraisal of biotechnological interventions, shortcomings, and factors influencing such potential areas success was presented. The unexplored gaps addressed here are relevant for W. fruticosa scientific innovations yet to come. In this paper, for the first time, we have presented a simple and reproducible protocol for synthetic seed production in W. fruticosa. KEY POINTS: • Critical and updated records on W. fruticosa phytochemistry and its activities • In vitro propagation and elicitation of secondary metabolites in W. fruticosa • Key bottlenecks, in vitro flowering, value addition, and outlook in W. fruticosa.

摘要

辣蓼木(Lythraceae)是一种木质药用灌木,通常被称为“火焰灌木”。辣蓼木的植物部分单独或整个植物在印度医学体系阿育吠陀、尤那尼和悉达(AUS)中都有很长的使用历史。这种植物以其药理学特性而闻名,即具有抗菌、抗炎、抗消化性溃疡、保肝、免疫调节、抗肿瘤、心脏保护、镇痛和伤口愈合活性。其重要的植物成分,如伍德福丁 C、伍德福丁 I、奥尼辛 B 和异沙可啉-A,具有体外或体内有益于人类健康的生理活性。由于该植物是植物成分的丰富来源,因此在其野生栖息地被滥采滥伐。此外,由于种子活力很差且生根困难,它被列入 IUCN 濒危植物物种名单。对于辣蓼木,通过体外再生来实现生物量生产或对其进行保护是最佳可行的选择。迄今为止,仅在辣蓼木中报道了少数几种重要的体外再生方法。已经证明了 ISSR 分子标记的无性系保真度和农杆菌介导的转化,表明辣蓼木适合遗传操作和基因组编辑研究。本综述简要总结了更新的关于辣蓼木植物成分及其生物活性的报告,同时对生物技术干预、缺点和影响这些潜在领域成功的因素进行了批判性评估。这里所解决的未开发的差距与辣蓼木未来的科学创新有关。在本文中,我们首次提出了一种在辣蓼木中生产合成种子的简单且可重复的方案。要点:• 关于辣蓼木植物化学及其活性的重要和最新记录• 辣蓼木的体外繁殖和次生代谢物的诱导• 辣蓼木的关键瓶颈、体外开花、附加值和前景。

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