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首页> 外文期刊>Plant Cell Reports >Transgene stacking and marker elimination in transgenic rice by sequential Agrobacterium-mediated co-transformation with the same selectable marker gene
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Transgene stacking and marker elimination in transgenic rice by sequential Agrobacterium-mediated co-transformation with the same selectable marker gene

机译:通过农杆菌介导的具有相同选择标记基因的共转化,转基因水稻中的转基因堆叠和标记消除

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摘要

Rice chitinase (chi11) and tobacco osmotin (ap24) genes, which cause disruption of fungal cell wall and cell membrane, respectively, were stacked in transgenic rice to develop resistance against the sheath blight disease. The homozygous marker-free transgenic rice line CoT23 which harboured the rice chi11 transgene was sequentially re-transformed with a second transgene ap24 by co-transformation using an Agrobacterium tumefaciens strain harbouring a single-copy cointegrate vector pGV2260∷pSSJ1 and a multi-copy binary vector pBin19∆nptII-ap24 in the same cell. pGV2260∷pSSJ1 T-DNA carried the hygromycin phosphotransferase (hph) and β-glucuronidase (gus) genes. pBin19∆nptII-ap24 T-DNA harboured the tobacco osmotin (ap24) gene. Co-transformation of the gene of interest (ap24) with the selectable marker gene (SMG, hph) occurred in 12 out of 18 T0 plants (67%). Segregation of hph from ap24 was accomplished in the T1 generation in one (line 11) of the four analysed co-transformed plants. The presence of ap24 and chi11 transgenes and the absence of the hph gene in the SMG-eliminated T1 plants of the line 11 were confirmed by DNA blot analyses. The SMG-free transgenic plants of the line 11 harboured a single copy of the ap24 gene. Homozygous, SMG-free T2 plants of the transgenic line 11 harboured stacked transgenes, chi11 and ap24. Northern blot analysis of the SMG-free plants revealed constitutive expression of chi11 and ap24. The transgenic plants with stacked transgenes displayed high levels of resistance against Rhizoctonia solani. Thus, we demonstrate the development of transgene-stacked and marker-free transgenic rice by sequential Agrobacterium-mediated co-transformation with the same SMG.
机译:将分别引起真菌细胞壁和细胞膜破坏的水稻几丁质酶(chi11)和烟草渗透素(ap24)基因堆叠在转基因水稻中,以增强对枯萎病的抵抗力。使用具有单拷贝共整合载体pGV2260∷pSSJ1的农杆菌农杆菌菌株,通过共转化,将带有水稻chi11转基因的纯合子无标记转基因水稻品系CoT23依次与第二个转基因ap24共转化。同一细胞中的向量pBin19ΔnptII-ap24。 pGV2260∷pSSJ1T-DNA带有潮霉素磷酸转移酶(hph)和β-葡萄糖醛酸苷酶(gus)基因。 pBin19ΔnptII-ap24T-DNA带有烟草渗透蛋白(ap24)基因。在18株T 0 植物中,有12株(67%)发生了目标基因(ap24)与选择标记基因(SMG,hph)的共转化。从ap24分离hph的过程是在四份经分析的共转化植物之一(第11行)的T 1 世代中完成的。通过DNA印迹分析证实了在SMG消除的品系11的T 1 植物中ap24和chi11转基因的存在以及hph基因的缺失。品系11的无SMG转基因植物带有ap24基因的单个拷贝。转基因品系11的纯合子,无SMG的T 2 植物具有堆叠的转基因chi11和ap24。不含SMG的植物的Northern印迹分析显示chi11和ap24的组成型表达。具有堆叠的转基因的转基因植物显示出对茄枯萎病的高水平抗性。因此,我们证明了通过农杆菌介导的相同SMG的连续转化,转基因堆叠和无标记转基因水稻的发展。

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