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The apt/6-Methylpurine Counterselection System and Its Applications in Genetic Studies of the Hyperthermophilic Archaeon Sulfolobus islandicus

机译:apt / 6-甲基嘌呤反选择系统及其在超嗜热古细菌Sulfolobus islandicus遗传研究中的应用

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Sulfolobus islandicus serves as a model for studying archaeal biology as well as linking novel biology to evolutionary ecology using functional population genomics. In the present study, we developed a new counterselectable genetic marker in S. islandicus to expand the genetic toolbox for this species. We show that resistance to the purine analog 6-methylpurine (6-MP) in S. islandicus M.16.4 is due to the inactivation of a putative adenine phosphoribosyltransferase encoded by M164_0158 ( apt ). The application of the apt gene as a novel counterselectable marker was first illustrated by constructing an unmarked α-amylase deletion mutant. Furthermore, the 6-MP counterselection feature was employed in a forward (loss-of-function) mutation assay to reveal the profile of spontaneous mutations in S. islandicus M.16.4 at the apt locus. Moreover, the general conservation of apt genes in the crenarchaea suggests that the same strategy can be broadly applied to other crenarchaeal model organisms. These results demonstrate that the apt locus represents a new tool for genetic manipulation and sequence analysis of the hyperthermophilic crenarchaeon S. islandicus .IMPORTANCE Currently, the pyrEF /5-fluoroorotic acid (5-FOA) counterselection system remains the sole counterselection marker in crenarchaeal genetics. Since most Sulfolobus mutants constructed by the research community were derived from genetic hosts lacking the pyrEF genes, the pyrEF /5-FOA system is no longer available for use in forward mutation assays. Demonstration of the apt /6-MP counterselection system for the Sulfolobus model renders it possible to again study the mutation profiles in mutants that have already been constructed by the use of strains with a pyrEF -deficient background. Furthermore, additional counterselectable markers will allow us to conduct more sophisticated genetic studies, i.e., investigate mechanisms of chromosomal DNA transfer and quantify recombination frequencies among S. islandicus strains.
机译:Sulfolobus islandicus可作为研究古细菌生物学的典范,并利用功能种群基因组学将新型生物学与进化生态联系起来。在当前的研究中,我们在S. islandicus中开发了一种新的可逆遗传标记,以扩展该物种的遗传工具箱。我们显示对岛链霉菌M.16.4中嘌呤类似物6-甲基嘌呤(6-MP)的耐药性是由于M164_0158(apt)编码的假定的腺嘌呤磷酸核糖转移酶的失活所致。首先通过构建未标记的α-淀粉酶缺失突变体来说明apt基因作为新型可逆选择标记的应用。此外,在正向(功能丧失)突变分析中采用了6-MP反选择功能,以揭示适度基因座岛链霉菌M.16.4中的自发突变。此外,在节肢动物中apt基因的一般保守性表明,相同的策略可以广泛地应用于其他的节肢动物模型生物。这些结果表明,apt位点代表了一种用于超嗜热克雷氏沙门氏菌的基因操作和序列分析的新工具。 。由于研究界构建的大多数Sulfolobus突变体均来自缺乏pyrEF基因的遗传宿主,因此pyrEF / 5-FOA系统不再可用于正向突变测定。对Sulfolobus模型的apt / 6-MP反选择系统的演示使得有可能再次研究已经通过使用具有pyrEF缺陷背景的菌株构建的突变体中的突变谱。此外,额外的可逆选择标记将使我们能够进行更复杂的遗传研究,即研究染色体DNA转移的机制并量化岛生链球菌菌株之间的重组频率。

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