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Transgene expression produced by biolistic?¢????mediated, site?¢????specific gene integration is consistently inherited by the subsequent generations

机译:由生物弹药介导的位点特异性基因整合产生的转基因表达一直被后代继承

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The efficient production of stable transgenic plants is important for both crop improvement and functional genomics. Site?¢????specific integration of foreign genes into a designated genomic position is an attractive tool for minimizing expression variability between transgenic lines. Here, we studied the utility of a Cre?¢????mediated, site?¢????specific integration approach, facilitated by particle bombardment, for streamlining the production of stable transgenic plants, using rice as a model species. Using this method, we generated 18 different transgenic lines containing a precise integration of a single copy of ???2?¢????glucuronidase gene ( gusA ) into a designated genomic location. Eleven of these lines contained no illegitimate integration in the background (single?¢????copy lines), and seven contained illegitimate integrations in addition to the site?¢????specific integration (multicopy lines). We monitored gusA expression in these lines up to three to four successive generations. Each of the single?¢????copy lines expressed the gusA gene at consistent levels and nearly doubled the expression level in the homozygous state. In contrast, multicopy lines displayed expression variation and gene silencing. In about half of the multicopy lines, however, expression of the site?¢????specific integration locus could be reactivated and stabilized on segregation of the illegitimate integrations, whereas, in the remaining half, expression could not be restored, as they contained genetically linked illegitimate integrations. This study demonstrates that biolistic?¢????mediated, site?¢????specific gene integration is an efficient and reliable tool for streamlining the production of stable transgenic plants.
机译:稳定转基因植物的有效生产对于作物改良和功能基因组学都很重要。将外源基因位点特异性整合到指定的基因组位置是使转基因品系之间的表达变异性最小化的有吸引力的工具。在这里,我们研究了利用水稻作为模型物种的Cre介导的,位点特异性整合方法的实用性,该方法通过粒子轰击促进了稳定转基因植物的生产。用这种方法,我们产生了18个不同的转基因品系,它们含有一个单拷贝的2-β-葡糖醛酸糖苷酶基因(gusA)的精确整合到指定的基因组位置。这些行中的11条在后台没有非法合并(单个复制行),除了特定于站点的特定整合(多行)以外,还有7条包含非法合并。我们监测了这些细胞系中的gusA表达,最多连续3至4代。每个单拷贝复制系均以一致的水平表达gusA基因,并且在纯合状态下表达水平几乎翻倍。相反,多拷贝品系表现出表达变异和基因沉默。然而,在大约一半的多拷贝品系中,在非法整合的分离时,位点特异性整合位点的表达可以被重新激活和稳定,而在剩下的一半中,表达不能恢复,因为它们包含遗传关联的非法整合。这项研究表明,生物弹药介导的位点特异性基因整合是简化稳定转基因植物生产的有效和可靠工具。

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