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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Luciferase-based transgenic recombination assay is more sensitive than beta-glucoronidase-based.
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Luciferase-based transgenic recombination assay is more sensitive than beta-glucoronidase-based.

机译:基于荧光素酶的转基因重组检测比基于β-葡萄糖醛酸苷酶的检测更加灵敏。

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摘要

Study of the DNA repair and genome stability in plants is directly dependent on the availability of an easy, inexpensive, and reliable assay. Marker gene-based homologous recombination (HR) assays were introduced more than a decade ago and have been intensively used ever since. Here, we compared several transgenic Arabidopsis and tobacco lines that carried in their genome the luciferase (LUC) or the beta-glucoronidase (uidA or GUS) substrates for HR. The average recombination frequency detected with the luciferase transgene was nearly 9.0-fold higher in Arabidopsis and 12.4-fold higher in tobacco plants. Importantly, both transgenes were under the control of 35S promoter and had similar expression levels throughout the plants. Irradiation with UVC increased the HR frequency similarly in both transgenes. The actual difference in the frequency of HR in Arabidopsis and tobacco possibly results from differing sensitivity to detection of transgene activity. Thus, we could suggest that luciferase recombination assay, due to its higher sensitivity, should be the assay of choice when plant genome stability is studied.
机译:植物中DNA修复和基因组稳定性的研究直接取决于简便,廉价和可靠的测定方法的可用性。基于标记基因的同源重组(HR)测定法于十多年前被引入,此后一直得到广泛使用。在这里,我们比较了几种转基因拟南芥和烟草系,它们在基因组中带有荧光素酶(LUC)或β-葡萄糖苷酸酶(uidA或GUS)作为HR的底物。萤光素酶转基因检测到的平均重组频率在拟南芥中高近9.0倍,在烟草植物中高12.4倍。重要的是,两个转基因都在35S启动子的控制下并且在整个植物中具有相似的表达水平。在两个转基因中,UVC辐照均增加了HR频率。拟南芥和烟草中HR频率的实际差异可能是由于对转基因活性检测的敏感性不同所致。因此,我们可以建议萤光素酶重组测定法,由于其较高的敏感性,应该是研究植物基因组稳定性时的首选测定法。

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