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Heterogeneous rpoS and rhlR mRNA Levels and 16S rRNA/rDNA (rRNA Gene) Ratios within Pseudomonas aeruginosa Biofilms, Sampled by Laser Capture Microdissection▿

机译:铜绿假单胞菌生物膜内异质性rpoS和rhlR mRNA水平以及16S rRNA / rDNA(rRNA基因)比率,通过激光捕获显微切割法取样▿

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摘要

The local environmental conditions in biofilms are dependent on the impinging aqueous solution, chemical diffusion, and the metabolic activities of cells within the biofilms. Chemical gradients established in biofilms lead to physiological heterogeneities in bacterial gene expression. Previously, we used laser capture microdissection (LCM) and quantitative reverse transcription (RT)-PCR to target defined biofilm subpopulations for gene expression studies. Here, we combined this approach with quantitative PCR of bacterial DNA to normalize the amount of gene expression per cell. By comparing the ratio of 16S rRNA to 16S rDNA (rRNA gene), we demonstrated that cells at the top of thick Pseudomonas aeruginosa biofilms have 16S rRNA/genome ratios similar to those of cells in a transition from the exponential phase to the stationary phase. Cells in the middle and bottom layers of these biofilms have ratios that are not significantly different from those of stationary-phase planktonic cultures. Since much of each biofilm appeared to be in a stationary-phase-like state, we analyzed the local amounts of the stationary-phase sigma factor rpoS gene and the quorum-sensing regulator rhlR gene per cell. Surprisingly, the amount of rpoS mRNA was largest at the top of the biofilms at the air-biofilm interface. Less than one rpoS mRNA transcript per cell was observed in the middle or base of the biofilms. The rhlR mRNA content was also greatest at the top of the biofilms, and there was little detectable rhlR expression at the middle or bottom of the biofilms. While the cell density was slightly greater at the bottom of the biofilms, expression of the quorum-sensing regulator occurred primarily at the top of the biofilms, where the cell metabolic activity was greatest, as indicated by local expression of the housekeeping gene acpP and by expression from a constitutive Ptrc promoter. The results indicate that in thick P. aeruginosa biofilms, cells in the 30 μm adjacent to the air-biofilm interface actively express genes associated with stationary phase, while cells in the interior portions do not express these genes and therefore are in a late-stationary-phase-like state and may be dormant.
机译:生物膜中的局部环境条件取决于撞击的水溶液,化学扩散以及生物膜中细胞的代谢活性。在生物膜中建立的化学梯度导致细菌基因表达的生理异质性。以前,我们使用激光捕获显微切割(LCM)和定量逆转录(RT)-PCR来靶向定义的生物膜亚群进行基因表达研究。在这里,我们将这种方法与细菌DNA的定量PCR相结合,以标准化每个细胞的基因表达量。通过比较16S rRNA与16S rDNA(rRNA基因)的比率,我们证明了厚的铜绿假单胞菌生物膜顶部的细胞具有16S rRNA /基因组比率,类似于从指数期到固定相过渡的细胞。这些生物膜中层和底层的细胞比例与固定相浮游培养的比例没有显着差异。由于每个生物膜的大部分似乎都处于固定相状态,因此我们对每个细胞分析了固定相sigma因子rpoS基因和群体感应调节剂rhlR基因的局部量。出乎意料的是,rpoS mRNA的量在空气-生物膜界面的生物膜顶部最大。在生物膜的中间或底部,每个细胞不到一个rpoS mRNA转录物。 rhlR mRNA的含量在生物膜的顶部也最大,在生物膜的中间或底部几乎没有可检测到的rhlR表达。虽然在生物膜的底部细胞密度稍高一些,但群体感应调节剂的表达主要发生在生物膜的顶部,在那里,细胞代谢活性最大,如管家基因acpP的局部表达和从组成型Ptrc启动子表达。结果表明,在厚厚的铜绿假单胞菌生物膜中,与空气-生物膜界面相邻的30μm细胞主动表达与固定相相关的基因,而内部的细胞则不表达这些基因,因此处于晚期静止状态相状态,可能处于休眠状态。

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