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Reconfiguring gene traps for new tasks using iTRAC

机译:使用iTRAC为新任务重新配置基因陷阱

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We recently developed integrase-mediated trap conversion (iTRAC) as a means of exploiting gene traps to create new genetic tools, such as new markers for imaging, drivers for gene expression and landing sites for gene and chromosome engineering. The principle of iTRAC is simple: primary gene traps are generated with transposon vectors carrying phi C31 integrase docking sites, which are subsequently utilized to integrate different constructs into trapped loci. Thus, iTRAC allows us to reconfigure selected traps for new purposes. Two features make iTRAC an attractive approach for Drosophila research. First, its versatility permits the exploitation of gene traps in an open-ended way, for applications that were not envisaged during the primary trapping screen. Second, iTRAC is readily transferable to new species and provides a means for developing complex genetic tools in Drosophilids that lack the facility of Drosophila melanogaster genetics.
机译:我们最近开发了整合酶介导的陷阱转化(iTRAC),以利用基因陷阱来创建新的遗传工具,例如用于成像的新标记,用于基因表达的驱动器以及用于基因和染色体工程的登陆位点。 iTRAC的原理很简单:用携带phi C31整合酶对接位点的转座子载体产生初级基因陷阱,随后将其用于将不同的构建体整合到捕获的基因座中。因此,iTRAC允许我们为新目的重新配置选定的陷阱。 iTRAC的两个功能使其成为果蝇研究的诱人方法。首先,它的多功能性允许以开放式方式利用基因陷阱,以用于初次捕获筛选中未曾设想的应用。其次,iTRAC易于转移至新物种,并为果蝇中缺乏果蝇遗传学设施的复杂遗传工具提供了开发手段。

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