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The role of hydrodynamics and AHL signalling moleculesas determinants of the structure of pseudomonas aeruginosabiofilms

机译:流体动力学和aHL信号分子的作用作为铜绿假单胞菌结构的决定因素生物膜

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摘要

The ability of two Pseudomonas aeruginosa PA01 wild type strains and two quorum sensing mutants to form biofilms in a recirculating continuous culture system was examined. Biofilms were grown under laminar and turbulent flow in parallel glass flow cells for between 9 and 12 d. One mutant, PANO67, is deficient in the production of BHL, however, it does produce OdDHL whereas a lasR lasI mutant does not produce OdDHL but is capable of producingBHL. The accumulation of biofilm biomass was estimated from the surface cover and the average microcolony thickness. The amount of biomass increased initially at a higher rate in the wild type strains than in the two quorum sensing mutants and a maximum was reached between 2 and 7 d after which there was some detachment of biofilm microcolonies. However, the biomass of the mutant strains steadily increased so that by the end of the experiments the mutant biofilms had a greater volume of biomass than the wild type strains. The results suggested no marked difference in the structure of the mutant biofilms compared to the wild type biofilms. However, the flow conditions had a profound influence on biofilm structure. Biofilms grown in turbulent flow consisted of filamentous streamers, while those grown in laminar flow consisted of a mono-layer of cells interspersed with circular microcolonies.
机译:检查了两种铜绿假单胞菌PA01野生型菌株和两个群体感应突变体在循环连续培养系统中形成生物膜的能力。生物膜在平行玻璃流动池中的层流和湍流作用下生长9到12 d。一种突变体PANO67缺乏BHL的产生,但是它确实产生OdDHL,而lasR lasI突变体不产生OdDHL,但能够产生BHL。从表面覆盖和平均小菌落厚度估计生物膜生物量的积累。与两个群体感应突变体相比,野生型菌株中的生物量最初以更高的速率增加,并且在2至7 d达到最大值,此后生物膜微菌落有些脱离。然而,突变菌株的生物量稳定地增加,使得到实验结束时,突变生物膜具有比野生型菌株更大的生物量。结果表明与野生型生物膜相比,突变生物膜的结构没有显着差异。然而,流动条件对生物膜结构有深远的影响。在湍流中生长的生物膜由丝状流光组成,而在层流中生长的生物膜由散布有圆形微菌落的单层细胞组成。

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