Biochemistry and Molecular Biology Unit, Faculty of Science of Bizerte, Carthage University, 7021, Jarzouna, Tunisia.
Wastewater Treatment and Valorization Laboratory, Water Research and Technology Center CERTE, Technopole Borj Cedria, 8020, Soliman, Tunisia.
Arch Microbiol. 2020 Jan;202(1):77-83. doi: 10.1007/s00203-019-01719-8. Epub 2019 Sep 4.
Several studies have investigated the effects of ionizing and non-ionizing radiations on microorganisms. However, the interaction between the magnetic field radiations and bacteria is less studied. The aim of our study was to study the effect of static magnetic field on the biofilm formation in Pseudomonas aeruginosa and its isogenic sod mutants. Our results revealed that the exposure to the static magnetic field (200 mT) increases significantly the swarming in the wild strain. The fliC gene expression did not show significant difference after 6 h exposure of the wild-type strain. The release of some compounds of the biofilm matrix such as rhamnolipids has been considerably enhanced after 6 h of exposure in the wild type. On the other hand, the pyocyanin and biofilm production was increased significantly in all strains compared to controls. Furthermore, our results revealed that the biofilm formation was confirmed by the pslA and ppyR gene expressions.
已有多项研究调查了电离辐射和非电离辐射对微生物的影响。然而,磁场辐射与细菌之间的相互作用研究较少。我们的研究旨在研究静磁场对铜绿假单胞菌及其同源 sod 突变体生物膜形成的影响。我们的结果表明,暴露于静磁场(200 mT)显著增加了野生型菌株的群集运动。在暴露于野生型菌株 6 小时后, fliC 基因的表达没有显著差异。在暴露 6 小时后,生物膜基质的一些化合物如鼠李糖脂的释放显著增强。另一方面,与对照相比,所有菌株的绿脓菌素和生物膜的产生都显著增加。此外,我们的结果表明,生物膜的形成通过 pslA 和 ppyR 基因的表达得到了证实。