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榛(Corylus avellana L.)愈伤组织生长的新型培养基。

A Novel Medium for Enhancing Callus Growth of Hazel (Corylus avellana L.).

机构信息

Department of Plant Breeding and Biotechnology, Faculty of Agriculture, Tarbiat Modares University, Tehran, P.O. Box: 14115-336, Iran.

Department of Plant Pathology, Faculty of Agriculture, Tarbiat Modares University, Tehran, P.O. Box: 14115-336, Iran.

出版信息

Sci Rep. 2017 Nov 15;7(1):15598. doi: 10.1038/s41598-017-15703-z.

Abstract

Paclitaxel is a powerful antimitotic agent with excellent activity against a range of cancers. Hazel has been described as a paclitaxel-producing species among angiosperms. Fast-growing callus is a prerequisite for the success of callus production and then paclitaxel production. Therefore, optimizing the medium culture for enhancing callus growth is a crucial step for paclitaxel production. In this research, Murashige and Skoog (1962) (MS) medium was optimized for improving callus growth of hazel (Corylus avellana L.). The M medium (MS medium with pH 6.0 and supplemented with 1000 mg l spirulina powder, 1000 mg l casein hydrolysate and 3 g l gelrite) significantly improved hazel callus growth. This modified MS medium increased callus fresh weight (55.8%) as compared to the control. M medium increased fatty acids yield of callus (66.7%) as compared to the control. Liquid M medium maintained growth over a longer period of time and also increased slightly, the paclitaxel production as compared to the control. This novel medium is promising for facilitating the mass production of hazel callus as a source of valuable metabolites including paclitaxel, linoleic and oleic acids.

摘要

紫杉醇是一种具有强大抗有丝分裂作用的药物,对多种癌症具有优异的活性。榛子已被描述为被子植物中产生紫杉醇的物种。快速生长的愈伤组织是愈伤组织生产然后紫杉醇生产成功的前提。因此,优化培养基培养以增强愈伤组织的生长是紫杉醇生产的关键步骤。在这项研究中,Murashige 和 Skoog(1962)(MS)培养基被优化以提高榛子(Corylus avellana L.)愈伤组织的生长。M 培养基(MS 培养基,pH 值为 6.0,添加 1000 mg·l 螺旋藻粉、1000 mg·l 水解酪蛋白和 3 g·l 琼脂糖)显著改善了榛子愈伤组织的生长。与对照相比,这种改良的 MS 培养基增加了愈伤组织的鲜重(55.8%)。M 培养基增加了愈伤组织中脂肪酸的产量(66.7%)与对照相比。液体 M 培养基在较长时间内保持生长,并与对照相比,紫杉醇的产量略有增加。这种新型培养基有望促进榛子愈伤组织的大规模生产,作为包括紫杉醇、亚油酸和油酸在内的有价值代谢物的来源。

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