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The Use of Next Generation Sequencing and Junction Sequence Analysis Bioinformatics to Achieve Molecular Characterization of Crops Improved Through Modern Biotechnology

机译:利用下一代测序和连接序列分析生物信息学实现通过现代生物技术改良的农作物的分子表征

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The assessment of genetically modified (GM) crops for regulatory approval currently requires a detailed molecular characterization of the DNA sequence and integrity of the transgene locus. In addition, molecular characterization is a critical component of event selection and advancement during product development. Typically, molecular characterization has relied on Southern blot analysis to establish locus and copy number along with targeted sequencing of polymerase chain reaction products spanning any inserted DNA to complete the characterization process. Here we describe the use of next generation (NexGen) sequencing and junction sequence analysis bioinformatics in a new method for achieving full molecular characterization of a GM event without the need for Southern blot analysis. In this study, we examine a typical GM soybean [Glycine max (L.) Merr.] line and demonstrate that this new method provides molecular characterization equivalent to the current Southern blot-based method. We also examine an event containing in vivo DNA rearrangement of multiple transfer DNA inserts to demonstrate that the new method is effective at identifying complex cases. Next generation sequencing and bioinformatics offers certain advantages over current approaches, most notably the simplicity, efficiency, and consistency of the method, and provides a viable alternative for efficiently and robustly achieving molecular characterization of GM crops.
机译:目前,对转基因作物的评估需要获得监管部门的批准,这需要对DNA序列进行详细的分子鉴定,并确定转基因基因座的完整性。此外,分子表征是产品开发过程中事件选择和进展的关键组成部分。通常,分子表征依赖于Southern印迹分析来确定基因座和拷贝数,以及跨越任何插入的DNA的聚合酶链反应产物的靶向测序,以完成表征过程。在这里,我们描述了新一代(NexGen)测序和连接序列分析生物信息学在无需进行Southern blot分析即可实现GM事件的完整分子表征的新方法中的使用。在这项研究中,我们检查了典型的转基因大豆[Glycine max(L.)Merr。]品系,并证明了这种新方法提供的分子表征与当前基于Southern blot的方法相当。我们还检查了包含多个转移DNA插入物的体内DNA重排的事件,以证明该新方法可有效识别复杂病例。下一代测序和生物信息学与当前方法相比具有某些优势,最显着的是该方法的简单性,效率和一致性,并为有效而稳健地实现转基因作物的分子鉴定提供了可行的选择。

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