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Towards a Systems Approach in the Genetic Analysis of Archaea: AcceleratingMutant Construction and Phenotypic Analysis in Haloferax volcanii

机译:迈向古细菌遗传分析的系统方法:加快火山嗜盐菌的突变体构建和表型分析

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摘要

With the availability of a genome sequence and increasingly sophisticated genetic tools, Haloferax volcanii is becoming a model for both Archaea and halophiles. In order for H. volcanii to reach a status equivalent to Escherichia coli, Bacillus subtilis, or Saccharomyces cerevisiae, a gene knockout collection needs to be constructed in order to identify the archaeal essential gene set and enable systematic phenotype screens. A streamlined gene-deletion protocol adapted for potential automation was implemented and used to generate 22 H. volcanii deletion strains and identify several potentially essential genes. These gene deletion mutants, generated in this and previous studies, were then analyzed in a high-throughput fashion to measure growth rates in different media and temperature conditions. We conclude that these high-throughput methods are suitable for a rapid investigation of an H. volcanii mutant library and suggest that they should form the basis of a larger genome-wide experiment.
机译:随着基因组序列的可用性和日益复杂的遗传工具的发展,Haloferax volcanii正成为古细菌和嗜盐菌的典范。为了使火山嗜血杆菌达到等同于大肠杆菌,枯草芽孢杆菌或酿酒酵母的状态,需要构建基因敲除集合体以鉴定古细菌必需基因集并进行系统的表型筛选。实施了一种适用于潜在自动化的简化基因删除方案,并用于生成22个火山嗜血杆菌缺失菌株并鉴定了一些潜在的必需基因。然后,以高通量方式分析在本研究和先前研究中生成的这些基因缺失突变体,以测量在不同培养基和温度条件下的生长速率。我们得出的结论是,这些高通量方法适合于快速调查H. volcanii突变体文库,并建议它们应构成更大的全基因组实验的基础。

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