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根癌农杆菌介导的甜叶菊叶片直接和间接再生转基因植株及体细胞无性系的生产及其糖苷谱分析

Agrobacterium tumefaciens-mediated transgenic plant and somaclone production through direct and indirect regeneration from leaves in Stevia rebaudiana with their glycoside profile.

作者信息

Khan Shamshad Ahmad, Ur Rahman Laiq, Shanker Karuna, Singh Manju

机构信息

Plant Biotechnology Division, Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), Kukrail Picnic Spot Road, P.O. CIMAP, Lucknow, 226015, India,

出版信息

Protoplasma. 2014 May;251(3):661-70. doi: 10.1007/s00709-013-0568-x. Epub 2013 Oct 24.

Abstract

Agrobacterium tumefaciens (EHA-105 harboring pCAMBIA 1304)-mediated transgenic plant production via direct regeneration from leaf and elite somaclones generation through indirect regeneration in Stevia rebaudiana is reported. Optimum direct regeneration frequency along with highest transformation frequency was found on MS + 1 mg/l BAP + 1 mg/l NAA, while indirect regeneration from callus was obtained on MS + 1 mg/l BAP + 2 mg/l NAA. Successful transfer of GUS-positive (GUS assay and PCR-based confirmation) transgenic as well as four somaclones up to glasshouse acclimatization has been achieved. Inter-simple sequence repeat (ISSR) profiling of transgenic and somaclonal plants showed a total of 113 bands, out of which 49 were monomorphic (43.36 %) and 64 were polymorphic (56.64 %). Transgenic plant was found to be closer to mother plant, while on the basis of steviol, stevioside, and rebaudioside A profile, somaclone S2 was found to be the best and showed maximum variability in ISSR profiling.

摘要

报道了通过发根农杆菌(携带pCAMBIA 1304的EHA - 105)介导,从甜叶菊叶片直接再生进行转基因植物生产以及通过间接再生产生优良体细胞无性系的方法。在MS + 1 mg/l BAP + 1 mg/l NAA培养基上发现了最佳的直接再生频率以及最高的转化频率,而在MS + 1 mg/l BAP + 2 mg/l NAA培养基上获得了愈伤组织的间接再生。已成功实现GUS阳性(GUS检测和基于PCR的确认)转基因植株以及四个体细胞无性系直至温室驯化的转移。转基因和体细胞无性系植株的简单序列重复区间(ISSR)分析共显示113条带,其中49条为单态性(43.36%),64条为多态性(56.64%)。发现转基因植株与母本植株更接近,而基于甜菊醇、甜菊糖苷和莱鲍迪苷A谱分析,体细胞无性系S2被发现是最好的,并且在ISSR分析中表现出最大的变异性。

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