Stability of T-DNA Integration in Phalaenopsis “Sogo Vivien” Transgenic Orchid Carrying 35S::Gal4::AtRKD4::GR

E. Semiarti, E. Mursyanti, A. Suyoko, Faiza Senja Widya Perdana, Catharina Tri Widyastuti, A. N. Subchan
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引用次数: 3

Abstract

Orchid is an elegant ornamental plant and favoured by the society. Phalaenopsis "Sogo vivien" is a mini-sized orchid with an interesting white-striped purple petals. This study was aimed to analyze the stability of the integration of embryonic gene carrier T-DNA from Arabidobsis AtRKD4 into the P. "Sogo vivien" genome produced in 2016. The study was conducted in 3 stages: 1) Transgenic plant phenotype analysis (1 year old); 2) Examination of T-DNA integration in orchid genotypes using PCR. 3) Analysis of transgenic plant leaf explants’ ability to produce somatic embryo in vitro. In vitro cultures were performed on the base medium of New Phalaenopsis (NP), plus various concentrations of TDZ (0, 1, 2 mg.L -1 ) and IBA (0, 1, 2 mg.L -1 ) or without TDZ and IBA as controls. The transgenic Phalaenopsis ‘Sogo vivien’ were transferred to pot mediums via ex vitro with two treatments: the first leaves were cut as explants for in vitro culture, and the plants were transferred to the mixture of fern medium with shavings of bark. The integration of T-DNA in the genome was detected by DNA genome amplification from the second leaves using the AtRKD4 gene primers and the POH1 gene. The results showed that the highest number of somatic embryo (SE) propagules or protocorm like bodies (PLBs) amounted to 27 were derived from transgenic plant # 2 cultured on NP + 2 mg.L -1 TDZ +1 mg.L -1 IBA medium. The presence of AtRKD4 transgenes were detected with the amplification of 380 bp of the RKD4 gene from the genome of transgenic plant # 2 by using PCR. There were 2 out of 15 plants that positively carry the AtRKD4 gene and produce SE. Thus, the stability of the AtRKD4 carrier T-DNA integration in the genomes of transgenic plants was 13.3%.
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携带35S::Gal4::AtRKD4::GR的蝴蝶兰“Sogo Vivien”转基因兰花T-DNA整合的稳定性
兰花是一种高雅的观赏植物,深受社会的喜爱。蝴蝶兰“Sogo vivien”是一种迷你大小的兰花,有着有趣的白色条纹紫色花瓣。本研究旨在分析阿拉比多菌AtRKD4的胚胎基因载体T-DNA整合到2016年生产的“Sogo vivien”P.基因组中的稳定性。本研究分三个阶段进行:1)转基因植物表型分析(1年生);2) 应用聚合酶链式反应检测兰花基因型的T-DNA整合。3) 转基因植物叶片外植体体外产生体细胞胚的能力分析。在新蝴蝶兰(NP)的基础培养基上进行体外培养,加入不同浓度的TDZ(0,1,2mg.L-1)和IBA(0,1,2mg.L-1)或不加入TDZ和IBA作为对照。将转基因蝴蝶兰‘Sogo vivien’通过离体培养基转移到盆栽培养基中,分为两个处理:将第一片叶子作为外植体进行体外培养,并将植物转移到蕨类培养基与树皮屑的混合物中。通过使用AtRKD4基因引物和POH1基因从第二片叶子进行DNA基因组扩增来检测基因组中T-DNA的整合。结果表明,在NP+2mg.L-1TDZ+1mg.L-1IBA培养基上培养的转基因植物2号体细胞胚(SE)繁殖体或原球茎(PLBs)数量最多,达27个。通过使用PCR从转基因植物#2的基因组扩增380bp的RKD4基因来检测AtRKD4转基因的存在。15株植物中有2株携带AtRKD4基因并产生SE。因此,AtRKD4载体T-DNA整合在转基因植物基因组中的稳定性为13.3%。
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