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Burkholderia Diffusible Signal Factor Signals to Francisella novicida To Disperse Biofilm and Increase Siderophore Production

机译:伯克霍尔德氏菌可传播信号因子信号传递给新弗朗西斯菌,以分散生物膜并增加铁载体产量

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In many bacteria, the ability to modulate biofilm production relies on specific signaling molecules that are either self-produced or made by neighboring microbes within the ecological niche. We analyzed the potential interspecies signaling effect of the Burkholderia diffusible signal factor (BDSF) on Francisella novicida , a model organism for Francisella tularensis , and demonstrated that BDSF both inhibits the formation and causes the dispersion of Francisella biofilm. Specificity was demonstrated for the cis versus the trans form of BDSF. Using transcriptome sequencing, quantitative reverse transcription-PCR, and activity assays, we found that BDSF altered the expression of many F. novicida genes, including genes involved in biofilm formation, such as chitinases. Using a chitinase inhibitor, the antibiofilm activity of BDSF was also shown to be chitinase dependent. In addition, BDSF caused an increase in RelA expression and increased levels of (p)ppGpp, leading to decreased biofilm production. These results support our observation that exposure of F. novicida to BDSF causes biofilm dispersal. Furthermore, BDSF upregulated the genes involved in iron acquisition ( figABCD ), increasing siderophore production. Thus, this study provides evidence for a potential role and mechanism of diffusible signal factor (DSF) signaling in the genus Francisella and suggests the possibility of interspecies signaling between Francisella and other bacteria. Overall, this study suggests that in response to the interspecies DSF signal, F. novicida can alter its gene expression and regulate its biofilm formation.
机译:在许多细菌中,调节生物膜产量的能力依赖于特定的信号分子,这些信号分子既可以自我产生,也可以由生态位内的邻近微生物产生。我们分析了伯克霍尔德菌扩散信号因子(BDSF)对弗朗西斯菌新孢子虫(弗朗西斯菌tularensis的模型生物)的潜在种间信号传导作用,并证明了BDSF既抑制弗朗西斯菌生物膜的形成又引起其散布。证明了顺式与反式BDSF的特异性。使用转录组测序,定量逆转录-PCR和活性测定,我们发现BDSF改变了许多F. novicida基因的表达,包括参与生物膜形成的基因,例如几丁质酶。使用几丁质酶抑制剂,BDSF的抗生物膜活性也显示为几丁质酶依赖性。此外,BDSF引起RelA表达增加和(p)ppGpp水平升高,从而导致生物膜产量降低。这些结果支持了我们的观察,即新孢子虫暴露于BDSF会引起生物膜扩散。此外,BDSF上调了参与铁吸收的基因(FigABCD),增加了铁载体的产生。因此,这项研究为弗朗西斯菌属中的扩散信号因子(DSF)信号传导的潜在作用和机制提供了证据,并提出了弗朗西斯菌与其他细菌之间种间信号传导的可能性。总体而言,这项研究表明,对种间DSF信号的响应,新孢子虫可以改变其基因表达并调节其生物膜形成。

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