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Maize Transposable Elements Ac/Ds as Insertion Mutagenesis Tools in Candida albicans

机译:玉米转座因子Ac / Ds在白色念珠菌中作为诱变工具

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摘要

In nonmodel systems, genetic research is often limited by the lack of techniques for the generation and identification of gene mutations. One approach to overcome this bottleneck is the application of transposons for gene tagging. We have established a two-element transposon tagging system, based on the transposable elements Activator (Ac)/Dissociation (Ds) from maize, for in vivo insertion mutagenesis in the fungal human pathogen Candida albicans. A nonautonomous Ds transposon carrying a selectable marker was constructed into the ADE2 promoter on chromosome 3 and a codon usage-adapted Ac transposase gene was inserted into the neutral NEUT5L locus on chromosome 5. In C. albicans cells expressing the transposase, the Ds element efficiently excised and reintegrated elsewhere in the genome, which makes the Ac/Ds transposons promising tools for saturating insertion mutagenesis in clinical strains of C. albicans.
机译:在非模型系统中,基因研究通常由于缺乏产生和鉴定基因突变的技术而受到限制。克服这一瓶颈的一种方法是将转座子用于基因标记。我们已经建立了一个基于玉米的转座子激活子(Ac)/解离(Ds)的两元素转座子标签系统,用于在真菌人类病原体白色念珠菌中进行体内插入诱变。将带有选择标记的非自治Ds转座子构建到3号染色体上的ADE2启动子中,并在5号染色体上的中性NEUT5L基因座中插入适应密码子使用的Ac转座酶基因。在表达该转座酶的白色念珠菌细胞中,Ds元件有效切除并重新整合到基因组中的其他地方,这使得Ac / Ds转座子成为使白色念珠菌临床菌株中的插入诱变饱和的有前途的工具。

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