O.N. Allen Laboratory for Soil Microbiology, Department of Soil Science, University of Wisconsin-Madison Madison, WI, USA.
Front Microbiol. 2011 Oct 12;2:187. doi: 10.3389/fmicb.2011.00187. eCollection 2011.
The bacterium Delftia sp. Cs1-4 produces novel extracellular structures (nanopods) in conjunction with its growth on phenanthrene. While a full genome sequence is available for strain Cs1-4, genetic tools that could be applied to study phenanthrene degradation/nanopod production have not been reported. Thus, the objectives of this study were to establish such tools, and apply them for molecular analysis of nanopod formation or phenanthrene degradation. Three types of tools were developed or validated. First, we developed a new expression system based on a strong promoter controlling expression of a surface layer protein (NpdA) from Delftia sp. Cs1-4, which was ca. 2,500-fold stronger than the widely used lactose promoter. Second, the Cre-loxP system was validated for generation of markerless, in-frame, gene deletions, and for in-frame gene insertions. The gene deletion function was applied to examine potential roles in nanopod formation of three genes (omp32, lasI, and hcp), while the gene insertion function was used for reporter gene tagging of npdA. Lastly, pMiniHimar was modified to enhance gene recovery and mutant analysis in genome-wide transposon mutagenesis. Application of the latter to strain Cs1-4, revealed several new genes with potential roles in phenanthrene degradation or npdA expression. Collectively, the availability of these tools has opened new avenues of investigation in Delftia sp. Cs1-4 and other related genera/species with importance in environmental toxicology.
细菌 Delftia sp. Cs1-4 在以菲为碳源生长时会产生新型细胞外结构(纳米管)。尽管 Cs1-4 菌株的全基因组序列已经可用,但尚未报道可用于研究菲降解/纳米管产生的遗传工具。因此,本研究的目的是建立这些工具,并将其应用于纳米管形成或菲降解的分子分析。开发或验证了三种类型的工具。首先,我们开发了一种新的表达系统,该系统基于一个强启动子控制 Delftia sp. Cs1-4 的表面层蛋白(NpdA)的表达,其强度约是广泛使用的乳糖启动子的 2500 倍。其次,验证了 Cre-loxP 系统用于生成无标记、框内、基因缺失以及框内基因插入。该基因缺失功能被应用于研究三个基因(omp32、lasI 和 hcp)在纳米管形成中的潜在作用,而基因插入功能则用于 npdA 的报告基因标记。最后,对 pMiniHimar 进行了修改,以增强基因组范围转座子诱变中的基因回收和突变分析。将后者应用于 Cs1-4 菌株,揭示了几个在菲降解或 npdA 表达中具有潜在作用的新基因。总的来说,这些工具的可用性为 Delftia sp. Cs1-4 及其他在环境毒理学中具有重要意义的相关属/种的研究开辟了新途径。