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An enhanced method for sequence walking and paralog mining: TOPO? Vector-Ligation PCR

机译:一种用于序列遍历和旁系同源物挖掘的增强方法:TOPO?载体连接PCR

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Background Although technological advances allow for the economical acquisition of whole genome sequences, many organisms' genomes remain unsequenced, and fully sequenced genomes may contain gaps. Researchers reliant upon partial genomic or heterologous sequence information require methods for obtaining unknown sequences from loci of interest. Various PCR based techniques are available for sequence walking - i.e., the acquisition of unknown DNA sequence adjacent to known sequence. Many such methods require rigid, elaborate protocols and/or impose narrowly confined options in the choice of restriction enzymes for necessary genomic digests. We describe a new method, TOPO? Vector-Ligation PCR (or TVL-PCR) that innovatively integrates available tools and familiar concepts to offer advantages as a means of both targeted sequence walking and paralog mining. Findings TVL-PCR exploits the ligation efficiency of the pCR?4-TOPO? (Invitrogen, Carlsbad, California) vector system to capture fragments of unknown sequence by creating chimeric molecules containing defined priming sites at both ends. Initially, restriction enzyme-digested genomic DNA is end-repaired to create 3' adenosine overhangs and is then ligated to pCR4-TOPO vectors. The ligation product pool is used directly as a template for nested PCR, using specific primers to target orthologous sequences, or degenerate primers to enable capture of paralogous gene family members. We demonstrated the efficacy of this method by capturing entire coding and partial promoter sequences of several strawberry Superman -like genes. Conclusions TVL-PCR is a convenient and efficient method for DNA sequence walking and paralog mining that is applicable to any organism for which relevant DNA sequence is available as a basis for primer design.
机译:背景技术尽管技术进步允许经济地获取整个基因组序列,但许多生物的基因组仍未测序,并且完全测序的基因组可能存在缺口。依赖于部分基因组或异源序列信息的研究人员需要用于从目的基因座获得未知序列的方法。各种基于PCR的技术可用于序列遍历-即获取与已知序列相邻的未知DNA序列。许多这样的方法需要严格,详尽的方案和/或在选择必需的基因组消化的限制性内切酶时施加狭窄限制的选择。我们介绍一种新方法TOPO 矢量连接PCR(或TVL-PCR),该方法创新地集成了可用的工具和熟悉的概念,以提供优势,作为两者的一种手段有针对性的序列行走和旁系同源物挖掘。研究结果TVL-PCR利用了pCR 4-TOPO (Invitrogen (加利福尼亚州卡尔斯巴德)载体系统,通过创建两端均包含定义的引物位点的嵌合分子来捕获未知序列的片段。最初,对限制性酶消化的基因组DNA进行末端修复,以产生3'腺苷突出端,然后与pCR4-TOPO载体连接。连接产物库可直接用作巢式PCR的模板,使用特定引物靶向直系同源序列,或简并引物以捕获旁系同源基因家族成员。我们通过捕获几个草莓超人样基因的完整编码和部分启动子序列证明了该方法的有效性。结论TVL-PCR是一种便捷,有效的DNA序列步移和旁系同源挖掘方法,适用于任何具有相关DNA序列作为引物设计基础的生物。

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