| Literature DB >> 25371551 |
Xiaoqing Gao1, Jie Zhou1, Jun Li1, Xiaowei Zou1, Jianhua Zhao1, Qingliang Li1, Ran Xia1, Ruifang Yang1, Dekai Wang1, Zhaoxue Zuo1, Jumin Tu1, Yuezhi Tao1, Xiaoyun Chen1, Qi Xie1, Zengrong Zhu1, Shaohong Qu2.
Abstract
Marker-free transgenic plants can be developed through transposon-mediated transgene reintegration, which allows intact transgene insertion with defined boundaries and requires only a few primary transformants. In this study, we improved the selection strategy and validated that the maize (Zea mays) Activator/Dissociation (Ds) transposable element can be routinely used to generate marker-free transgenic plants. A Ds-based gene of interest was linked to green fluorescent protein in transfer DNA (T-DNA), and a green fluorescent protein-aided counterselection against T-DNA was used together with polymerase chain reaction (PCR)-based positive selection for the gene of interest to screen marker-free progeny. To test the efficacy of this strategy, we cloned the Bacillus thuringiensis (Bt) δ-endotoxin gene into the Ds elements and transformed transposon vectors into rice (Oryza sativa) cultivars via Agrobacterium tumefaciens. PCR assays of the transposon empty donor site exhibited transposition in somatic cells in 60.5% to 100% of the rice transformants. Marker-free (T-DNA-free) transgenic rice plants derived from unlinked germinal transposition were obtained from the T1 generation of 26.1% of the primary transformants. Individual marker-free transgenic rice lines were subjected to thermal asymmetric interlaced-PCR to determine Ds(Bt) reintegration positions, reverse transcription-PCR and enzyme-linked immunosorbent assay to detect Bt expression levels, and bioassays to confirm resistance against the striped stem borer Chilo suppressalis. Overall, we efficiently generated marker-free transgenic plants with optimized transgene insertion and expression. The transposon-mediated marker-free platform established in this study can be used in rice and possibly in other important crops.Entities:
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Year: 2014 PMID: 25371551 PMCID: PMC4280998 DOI: 10.1104/pp.114.246173
Source DB: PubMed Journal: Plant Physiol ISSN: 0032-0889 Impact factor: 8.340