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- (L.)库尔茨的介导转化

- Mediated transformation of (L.) Kurz.

作者信息

Bulle Mallesham, Rathakatla Deepa, Lakkam Raghuvardhan, Kokkirala Venugopal Rao, Aileni Mahender, Peng Zhang, Abbagani Sadanandam

机构信息

Plant Biotechnology Research Unit, Department of Biotechnology, Kakatiya University, Warangal 506 009, India.

Venkateswara Institute of Pharmaceutical Sciences, Cherlapally, Nalgonda 508 001, India.

出版信息

J Genet Eng Biotechnol. 2015 Dec;13(2):201-207. doi: 10.1016/j.jgeb.2015.09.001. Epub 2015 Oct 1.

Abstract

In the present study, -mediated transformation has been optimized for (L.) Kurz. Precultured axenic leaf segments were co-cultivated with strain LBA4404 harboring the binary plasmid pCAMBIA1301 with β-glucuronidase () containing intron as the reporter gene and hygromycin phosphotransferase () as a selectable marker gene. After 3 days of co-cultivation, leaf segments were cultured on MS medium containing Thidiazuron (TDZ 4.54 μM) and Indole-3-acetic acid IAA (1.14 μM) + 20 mg/l hygromycin + 200 mg/l cefotaxime (PTSM) for 4 weeks (includes a single subculture onto the same medium at a 2 week interval). They were subsequently cultured for 3 weeks on MS medium containing Thidiazuron (TDZ 4.54 μM) and Indole-3-acetic acid IAA (1.14 μM) + 25 mg/l hygromycin + 100 mg/l cefotaxime (PTSM) medium for further development and shoot elongation. The hygromycin resistant shoots were rooted on a rooting medium (PTRM) containing half strength MS medium + 4.90 μM IBA + 25 mg/l hygromycin. A highest transformation efficiency of 44.5% with a mean number of 2.6 transgenic shoots per explant was achieved. Successful transformation was confirmed by the histochemical GUS activity of the regenerated shoots, PCR and RT-PCR analysis using respective primers. Southern blot analysis revealed that the gene integrated into the genome of transgenic . Establishment of genetic transformation protocol may facilitate the improvement of this medicinal plant in terms of enhancement of secondary metabolites.

摘要

在本研究中,已针对(L.)Kurz优化了介导转化。将无菌预培养的叶片切段与携带二元质粒pCAMBIA1301的根癌农杆菌LBA4404共培养,该质粒带有含内含子的β-葡萄糖醛酸酶()作为报告基因以及潮霉素磷酸转移酶()作为选择标记基因。共培养3天后,将叶片切段在含有噻二唑素(TDZ 4.54 μM)和吲哚-3-乙酸IAA(1.14 μM)+ 20 mg/l潮霉素 + 200 mg/l头孢噻肟(PTSM)的MS培养基上培养4周(包括每隔2周在相同培养基上进行一次继代培养)。随后,将它们在含有噻二唑素(TDZ 4.54 μM)和吲哚-3-乙酸IAA(1.14 μM)+ 25 mg/l潮霉素 + 100 mg/l头孢噻肟(PTSM)的MS培养基上培养3周以促进进一步发育和芽伸长。抗潮霉素的芽在含有半强度MS培养基 + 4.90 μM吲哚丁酸 + 25 mg/l潮霉素的生根培养基(PTRM)上生根。获得了最高44.5%的转化效率,每个外植体平均有2.6个转基因芽。通过再生芽的组织化学GUS活性、使用各自引物的PCR和RT-PCR分析证实了成功转化。Southern杂交分析表明基因整合到了转基因的基因组中。遗传转化方案的建立可能有助于在提高次生代谢产物方面对这种药用植物进行改良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e3d/6299799/edff172cfd1f/gr2.jpg

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