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Molecular Toolbox for Genetic Manipulation of the Stalked Budding Bacterium Hyphomonas neptunium

机译:茎芽孢杆菌Hy的遗传操纵的分子工具箱

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The alphaproteobacterium Hyphomonas neptunium proliferates by a unique budding mechanism in which daughter cells emerge from the end of a stalk-like extension emanating from the mother cell body. Studies of this species so far have been hampered by the lack of a genetic system and of molecular tools allowing the regulated expression of target genes. Based on microarray analyses, this work identifies two H. neptunium promoters that are activated specifically by copper and zinc. Functional analyses show that they have low basal activity and a high dynamic range, meeting the requirements for use as a multipurpose expression system. To facilitate their application, the two promoters were incorporated into a set of integrative plasmids, featuring a choice of two different selection markers and various fluorescent protein genes. These constructs enable the straightforward generation and heavy metal-inducible synthesis of fluorescent protein fusions in H. neptunium, thereby opening the door to an in-depth analysis of polar growth and development in this species.
机译:α变形杆菌Hyphomonas neptunium通过独特的出芽机制增殖,其中子细胞从母体发出的茎状延伸末端出现。迄今为止,由于缺乏遗传系统和分子工具,无法调节靶基因的表达,对该物种的研究受到了阻碍。基于微阵列分析,这项工作确定了由铜和锌特异性激活的两个H. Neptunium启动子。功能分析表明它们具有低的基础活性和高的动态范围,满足用作多功能表达系统的要求。为了促进其应用,将两个启动子整合到一组整合质粒中,这些整合质粒具有两种不同的选择标记和多种荧光蛋白基因的选择。这些构建体使得在H中的荧光蛋白融合物能够直接生成并由重金属诱导合成,从而为深入分析该物种的极性生长和发育打开了大门。

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