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Production of marker-free transgenic Nierembergia caerulea using MAT vector system

机译:使用MAT载体系统生产无标记转基因蓝藻

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Agrobacterium tumefaciens strain EHA105 harboring an ipt-type MAT vector, pNPI132, was used to produce morphologically normal transgenic Nierembergia caerulea cv. Mont Blanc employing ipt gene as the selectable marker gene. beta-glucuronidase (GUS) gene was used as model gene of interest. The MAT vector system is a positive selection system that gives the advantage of regeneration to the transgenic cells without killing the non-transgenic cells. Infected explants were cultured on hormone- and antibiotic-free MS medium, and 65% of the regenerated shoots developed ipt shooty phenotype-morphologically abnormal shoots, within approximately 3 months after co-cultivation. Twenty morphologically normal shoots were produced from 12 transgenic ipt shoots 7 months after co-cultivation. The normal shoots rooted well on hormone-free MS medium. Ninety percent of the normal shoots were ipt (-), GUS(+) and excision(+) as determined by PCR and Southern blot analyses. These results indicate that ipt-type MAT vector system can be used successfully in Nierembergia to produce marker-free transgenic plants without using phytohormones and selective chemical agents.
机译:携带ipt型MAT载体pNPI132的根癌农杆菌菌株EHA105被用于生产形态正常的转基因蓝藻耶尔弗氏菌。勃朗峰采用ipt基因作为选择标记基因。 β-葡萄糖醛酸苷酶(GUS)基因被用作目标模型基因。 MAT载体系统是一种阳性选择系统,可为转基因细胞提供再生优势,而不会杀死非转基因细胞。将感染的外植体培养在不含激素和抗生素的MS培养基上,共培养后约3个月内,有65%的再生芽形成了ipt芽表型-形态异常芽。共培养7个月后,从12个转基因ipt苗中产生了20个形态正常的苗。正常芽在无激素的MS培养基上扎根很好。通过PCR和Southern印迹分析确定,百分之九十的正常芽为ipt(-),GUS(+)和excision(+)。这些结果表明,在不使用植物激素和选择性化学试剂的情况下,ipt型MAT载体系统可以成功地用于Nierembergia中生产无标记的转基因植物。

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