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首页> 外文期刊>BMC Biotechnology >A simplified counter-selection recombineering protocol for creating fluorescent protein reporter constructs directly from C. elegans fosmid genomic clones
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A simplified counter-selection recombineering protocol for creating fluorescent protein reporter constructs directly from C. elegans fosmid genomic clones

机译:直接从秀丽隐杆线虫fosmid基因组克隆中创建荧光蛋白报告基因构建体的简化反选择重组方案

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Background Recombineering is a genetic engineering tool that enables facile modification of large episomal clones, e.g. BACs, fosmids. We have previously adapted this technology to generate, directly from fosmid-based genomic clones, fusion gene reporter constructs designed to investigate gene expression patterns in C . elegans . In our adaptation a rpsL-tet(A) positiveegative-selection cassette (RT-cassette) is first inserted and then, under negative selection, seamlessly replaced with the desired sequence. We report here on the generation and application of a resource comprising two sets of constructs designed to facilitate this particular recombineering approach. Results Two complementary sets of constructs were generated. The first contains different fluorescent protein reporter coding sequences and derivatives while the second set of constructs, based in the copy-number inducible vector pCC1Fos, provide a resource designed to simplify RT-cassette-based recombineering. These latter constructs are used in pairs the first member of which provides a template for PCR-amplification of an RT-cassette while the second provides, as an excised restriction fragment, the desired fluorescent protein reporter sequence. As the RT-cassette is flanked by approximately 200 bp from the ends of the reporter sequence the subsequent negative selection replacement step is highly efficient. Furthermore, use of a restriction fragment minimizes artefacts negating the need for final clone sequencing. Utilizing this resource we generated single-, double- and triple-tagged fosmid-based reporters to investigate expression patterns of three C . elegans genes located on a single genomic clone. Conclusions We describe the generation and application of a resource designed to facilitate counter-selection recombineering of fosmid-based C . elegans genomic clones. By choosing the appropriate pair of ‘insertion’ and ‘replacement’ constructs recombineered products, devoid of artefacts, are generated at high efficiency. Gene expression patterns for three genes located on the same genomic clone were investigated via a set of fosmid-based reporter constructs generated with the modified protocol.
机译:背景重组是一种基因工程工具,其使得能够容易地修饰大型游离型克隆,例如克隆。 BAC,fosmids。我们以前已经对该技术进行了修改,以直接从基于fosmid的基因组克隆中生成融合基因报道基因构建体,该构建体旨在研究C中的基因表达模式。线虫。在我们的改编中,首先插入rpsL-tet(A)阳性/阴性选择盒带(RT-cassette),然后在阴性选择下用所需序列无缝替换。我们在这里报告资源的生成和应用,该资源包括旨在促进这种特定重组方法的两组构造。结果产生了两组互补的构建体。第一个包含不同的荧光蛋白报告基因编码序列和衍生物,而第二个构建体基于拷贝数诱导型载体pCC1Fos,提供了旨在简化基于RT盒的重组的资源。这些后面的构建体成对使用,其第一个成员提供用于RT-盒的PCR扩增的模板,而第二个作为切除的限制性片段提供所需的荧光蛋白报道序列。由于RT盒式磁带距报告序列的末端约200 bp,因此后续的负选择替换步骤非常高效。此外,限制片段的使用使不需要最终克隆测序的假象最小化。利用这种资源,我们生成了基于单,双和三标签的基于fosmid的报道分子,以研究三个C的表达模式。线虫基因位于单个基因组克隆上。结论我们描述了旨在促进基于fosmid的C的反选择重组的资源的产生和应用。线虫基因组克隆。通过选择适当的“插入”和“替换”对,可以高效地生成没有伪像的复合产品。通过一组使用改良方案生成的基于化石的报告基因构建体,研究了位于同一基因组克隆上的三个基因的基因表达模式。

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