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首页> 外文期刊>Plant Cell Reports >Efficient auto-excision of a selectable marker gene from transgenic citrus by combining the Cre/loxP system and ipt selection.
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Efficient auto-excision of a selectable marker gene from transgenic citrus by combining the Cre/loxP system and ipt selection.

机译:通过结合Cre / loxP系统和ipt选择,从转基因柑橘中有效地自动选择标记基因。

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The presence of marker genes in genetically modified crops raises public concerns regarding their safety. The removal of marker genes can prevent the risk of their flow into the environment and hasten the public's acceptance of transgenic products. In this study, a new construct based on the Cre/loxP site-recombination system was designed to delete marker genes from transgenic citrus. In the construct, the selectable marker gene isopentenyltransferase gene (ipt) from Agrobacterium tumefaciens and the Cre recombinase gene were flanked by two loxP recognition sites in the direct orientation. The green fluorescent protein (gfp) reporter gene for monitoring the transformation of foreign genes was located outside of the loxP sequences. Transformation and deletion efficiencies of the vector were investigated using nopaline synthase gene (NosP) and CaMV 35S promoters to drive expression of Cre. Analysis of GFP activity showed that 28.1 and 13.6% transformation efficiencies could be obtained by NosP- and CaMV 35S-driven deletions, respectively. Molecular analysis demonstrated that 100% deletion efficiency was observed in the transgenic plants. The complete excision of the marker gene was found in all deletion events driven by NosP and in 81.8% of deletion events driven by CaMV 35S. The results showed that Cre/loxP-mediated excision was highly efficient and precise in citrus. This approach provides a reliable strategy for auto-deletion of selectable marker genes from transgenic citrus to produce marker-free transgenic plants.
机译:转基因作物中标记基因的存在引起公众对其安全性的关注。去除标记基因可以防止其流入环境的风险,并加快公众对转基因产品的接受程度。在这项研究中,设计了基于Cre / loxP位点重组系统的新构建体,以从转基因柑橘中删除标记基因。在该构建体中,来自根癌土壤杆菌的选择标记基因异戊烯基转移酶基因(ipt)和Cre重组酶基因的两个侧面是直接定向的loxP识别位点。用于监测外源基因转化的绿色荧光蛋白(gfp)报告基因位于loxP序列之外。使用胭脂碱合酶基因(NosP)和CaMV 35S启动子驱动Cre的表达,研究了载体的转化效率和缺失效率。 GFP活性分析表明,NosP和CaMV 35S驱动的缺失分别可实现28.1和13.6%的转化效率。分子分析表明在转基因植物中观察到100%的缺失效率。在由NosP驱动的所有缺失事件和由CaMV 35S驱动的81.8%的缺失事件中都发现了标记基因的完全切除。结果表明,Cre / loxP介导的切除在柑橘中是高效且精确的。这种方法为从转基因柑桔中自动删除选择标记基因以产生无标记转基因植物提供了可靠的策略。

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