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A simplified, robust, and streamlined procedure for the production of C. elegans transgenes via recombineering

机译:通过重组产生线虫秀丽隐杆线虫的简化,健壮和简化的程序

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Background The nematode Caenorhabditis elegans has emerged as a powerful system to study biologic questions ranging from development to aging. The generation of transgenic animals is an important experimental tool and allows use of GFP fusion proteins to study the expression of genes of interest or generation of epitope tagged versions of specific genes. Transgenes are often generated by placing a promoter upstream of a reporter gene or cDNA. This often produces a representative expression pattern, but important exceptions have been observed. To better capture the genuine expression pattern and timing, several investigators have modified large pieces of DNA carried by BACs or fosmids for use in the construction of transgenic animals via recombineering. However, these techniques are not in widespread use despite the advantages when compared to traditional approaches. Additionally, some groups have encountered problems with employing these techniques. Hence, we sought identify ways to improve the simplicity and reliability of the procedure. Results We describe here several important modifications we have made to existing protocols to make the procedure simpler and more robust. Among these are the use of galK gene as a selection marker for both the positive and negative selection steps in recombineering, the use of R6K based plasmids which eliminate the need for extensive PCR product purification, a means to integrate the unc-119 marker on to the fosmid backbone, and placement of homology arms to commonly used GFP and TAP fusion genes flanking the galK cassette which reduces the cost of oligos by 50%. Conclusion We have made several significant changes that allow the production of C. elegans transgenes from a commercially available fosmid library in a robust and streamlined manner. These changes make the technique more attractive especially to small academic labs unfamiliar with recombineering.
机译:背景技术线虫秀丽隐杆线虫已经成为研究从发育到衰老的生物学问题的强大系统。转基因动物的产生是重要的实验工具,并允许使用GFP融合蛋白来研究目的基因的表达或特定基因的表位标记形式的产生。转基因通常是通过将启动子置于报告基因或cDNA的上游来产生的。这通常会产生代表性的表达模式,但已观察到重要的例外。为了更好地捕捉真实的表达模式和时间安排,一些研究人员对BAC或fosmids携带的大片段DNA进行了修饰,以通过重组工程构建转基因动物。然而,尽管与传统方法相比具有优势,但是这些技术并未得到广泛使用。另外,一些小组在采用这些技术时遇到了问题。因此,我们寻求确定提高程序简单性和可靠性的方法。结果我们在这里描述了对现有协议进行的一些重要修改,以使该过程更简单,更可靠。其中包括将galK基因用作重组中正向和负向选择步骤的选择标记,使用基于R6K的质粒消除了广泛PCR产物纯化的需要,这是一种将unc-119标记整合到C fosmid骨架,并将同源臂置于galK盒旁的常用GFP和TAP融合基因上,从而将寡核苷酸的成本降低了50%。结论我们进行了几项重大更改,从而可以从市售的fosmid文库中以强大而精简的方式生产秀丽隐杆线虫转基因。这些变化使该技术更具吸引力,尤其是对于不熟悉重组的小型学术实验室。

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