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DelsGate,一种强大且快速的基因缺失构建方法。

DelsGate, a robust and rapid gene deletion construction method.

作者信息

García-Pedrajas María D, Nadal Marina, Kapa Laura B, Perlin Michael H, Andrews David L, Gold Scott E

机构信息

Department of Plant Pathology, University of Georgia, Athens, GA 30602-7274, USA.

出版信息

Fungal Genet Biol. 2008 Apr;45(4):379-88. doi: 10.1016/j.fgb.2007.11.001. Epub 2007 Nov 19.

Abstract

With the increasing availability of fungal genome sequences there is great demand for fast, simple high-throughput methods to generate constructs for gene deletion. Here we describe a method that combines PCR and Gateway cloning technology together with use of the I-SceI homing endonuclease to generate precise deletion constructs in a very simple, universal and robust manner in just 2 days. These constructs are then used to produce deletion mutants in the organism of interest following applicable methods for that species. In establishing this protocol we determined empirically that 1 kb was a suitable flank length to facilitate homologous recombination in our species of interest, Ustilago maydis. The method, which we have named DelsGate (Deletions via Gateway), consists of standard PCR of only the 5' and 3' 1 kb gene flanks directly followed by in vitro Gateway cloning and final generation of the circular deletion construct by in vivo recombination in Escherichia coli. For use in DelsGate we have modified a Gateway cloning vector to include selectable markers for transformation of Ascomycetes and the Basidiomycete fungus U. maydis which causes corn smut disease. We have tested the reproducibility of the DelsGate approach by generating deletion constructs for 12 U. maydis genes. Although not tested here, the PCR and transformation steps of DelsGate should be well suited for high-throughput approaches to gene deletion construction in fungal species. DelsGate has the potential to be universal for all organisms with efficient transformation and homologous recombination systems.

摘要

随着真菌基因组序列越来越容易获得,人们对快速、简单的高通量方法来构建基因缺失载体的需求也越来越大。在此,我们描述了一种将PCR、Gateway克隆技术与I-SceI归巢内切核酸酶的使用相结合的方法,该方法能以非常简单、通用且可靠的方式在短短2天内生成精确的缺失载体。然后,按照适用于该物种的方法,将这些载体用于在目标生物体中产生缺失突变体。在建立该方案时,我们通过实验确定1 kb是一个合适的侧翼长度,以促进我们感兴趣的物种——玉米黑粉菌中的同源重组。我们将该方法命名为DelsGate(通过Gateway进行缺失),它包括仅对5'和3'端1 kb基因侧翼进行标准PCR,随后直接进行体外Gateway克隆,并最终通过大肠杆菌体内重组生成环状缺失载体。为了用于DelsGate,我们对一个Gateway克隆载体进行了修饰,使其包含用于子囊菌和引起玉米黑粉病的担子菌真菌玉米黑粉菌转化的选择标记。我们通过为12个玉米黑粉菌基因生成缺失载体,测试了DelsGate方法的可重复性。尽管此处未进行测试,但DelsGate的PCR和转化步骤应该非常适合真菌物种中基因缺失构建的高通量方法。DelsGate有可能适用于所有具有高效转化和同源重组系统的生物体。

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