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Production of Recombineering Substrates With Standard-size PCR Primers

机译:用标准大小的PCR引物生产重组底物

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摘要

Recombineering is a powerful method for DNA manipulation. It has advantages over restriction endonuclease-based methods and is usually rapid. Typically recombineering uses long PCR primers (~65 bases), each of which contains a small region of target homology (~45 bases). We have developed a simple, albeit somewhat less rapid, strategy to create recombineering substrates that can use primers of ≤35 bases for all steps. The regions of homology can be several hundred base pairs in length to (1) increase the chance of obtaining the desired clone and/or (2) allow coliphage-based recombineering in some non-Escherichia coli bacteria. The method uses cloning techniques to construct a template for the generation of the recombineering substrate. Because the template is made from cloned DNA segments, the segments (including those for the homology regions) can be readily changed. During construction of the template plasmid, potential background transformants arising from the vector without insert are significantly reduced by cloning each segment with two restriction endonucleases that produce non-compatible ends. We have used this method to change the bla gene of pACYC177 to aadA, to add the MCS-lacZα region from pBBR1MCS to IncQ plasmid vectors, and to make an oriTIncP-aacC1 cassette and add it to a plasmid.
机译:重组是用于DNA操作的强大方法。与基于限制性内切酶的方法相比,它具有优势,并且通常是快速的。通常,重组使用长的PCR引物(〜65个碱基),每个引物都包含一个小的靶同源区域(〜45个碱基)。我们已经开发了一种简单的策略,尽管速度不太快,但它可以创建可在所有步骤中使用≤35个碱基的引物的重组底物。同源区域的长度可以是几百个碱基对,以(1)增加获得所需克隆的机会和/或(2)在某些非大肠杆菌细菌中允许基于噬菌体的重组。该方法使用克隆技术来构建用于产生重组底物的模板。由于模板是由克隆的DNA片段制成的,因此可以轻松更改这些片段(包括同源区域的片段)。在模板质粒的构建过程中,通过用产生不相容末端的两种限制性核酸内切酶克隆每个片段,可显着减少无插入载体的潜在背景转化子。我们已经使用这种方法将pACYC177的bla基因更改为aadA,将pBBR1MCS的MCS-lacZα区添加到IncQ质粒载体,并制作oriTIncP-aacC1盒并将其添加到质粒中。

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