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Screening of a Haloferax volcanii Transposon Library Reveals Novel Motility and Adhesion Mutants

机译:火山嗜血杆菌转座子文库的筛选揭示了新型的运动性和粘附突变体。

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摘要

Archaea, like bacteria, use type IV pili to facilitate surface adhesion. Moreover, archaeal flagella—structures required for motility—share a common ancestry with type IV pili. While the characterization of archaeal homologs of bacterial type IV pilus biosynthesis components has revealed important aspects of flagellum and pilus biosynthesis and the mechanisms regulating motility and adhesion in archaea, many questions remain. Therefore, we screened a Haloferax volcanii transposon insertion library for motility mutants using motility plates and adhesion mutants, using an adapted air–liquid interface assay. Here, we identify 20 genes, previously unknown to affect motility or adhesion. These genes include potential novel regulatory genes that will help to unravel the mechanisms underpinning these processes. Both screens also identified distinct insertions within the genomic region lying between two chemotaxis genes, suggesting that chemotaxis not only plays a role in archaeal motility, but also in adhesion. Studying these genes, as well as hypothetical genes hvo_2512 and hvo_2876—also critical for both motility and adhesion—will likely elucidate how these two systems interact. Furthermore, this study underscores the usefulness of the transposon library to screen other archaeal cellular processes for specific phenotypic defects.
机译:古细菌像细菌一样,使用IV型菌毛来促进表面粘附。此外,古生鞭毛(运动所需的结构)与IV型菌毛有共同的血统。尽管表征细菌IV型菌毛生物合成成分的古细菌同源物已经揭示了鞭毛和菌毛生物合成的重要方面以及调节古细菌运动性和粘附的机制,但是仍然存在许多问题。因此,我们使用运动平板和粘附突变体,通过改编的气液界面分析,筛选了嗜盐哈弗氏转座子插入文库中的运动突变体。在这里,我们确定了20个基因,这些基因以前未知以影响运动性或粘附性。这些基因包括潜在的新型调控基因,这些基因将有助于阐明支撑这些过程的机制。两种筛选还鉴定出位于两个趋化性基因之间的基因组区域内的不同插入,这表明趋化性不仅在古细菌运动中起作用,而且在粘附中也起作用。研究这些基因以及假设性基因hvo_2512和hvo_2876(对运动性和粘附性也至关重要)可能会阐明这两个系统如何相互作用。此外,这项研究强调了转座子文库用于筛选其他古细菌细胞过程中特定表型缺陷的有用性。

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