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Detachment of Aeromonas hydrophila and Pseudomonas aeruginosa due to variations in nutrient supply

机译:营养物供应的变化导致嗜水气单胞菌和铜绿假单胞菌的分离

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Growth and detachment rates of Aeromonas hydrophila and Pseudomonas aeruginosa were measured to determine if nutrient depletion causes detachment of attached cells. A glass parallel plate, continuous observation flow cell placed on a phase contrast microscope was used to monitor bacterial behaviour on the surface under defined flow and mass transfer conditions. Shear stress was held constant at 3 N m~(-2). Images were taken every 15 minutes, and digital image analysis was used to quantify specific growth, detachment and accumulation rates for the attached organisms. An observable parameter proportional to the nutrient depletion at the surface was used to determine the effect of nutrient depletion on detachment rates. Increases in the depletion parameter corresponded with increases in detachment rate after the cells were rod, but the depletion parameter was not scaleable between different experiments. These experiments showed that as nutrients were depleted, detachment increased. If the detachment mechanism postulated in this work is more universal and applicable to other microbial species, new methods of detachment control through dynamic changes of nutrient supply might be devised.
机译:测量嗜水气单胞菌和铜绿假单胞菌的生长和脱离速率,以确定营养物质消耗是否引起附着细胞的脱离。放置在相衬显微镜上的玻璃平行板连续观察流动池用于在规定的流量和传质条件下监测表面细菌的行为。剪切应力保持恒定在3 N m〜(-2)。每15分钟拍摄一次图像,并使用数字图像分析来量化附着生物的特定生长,脱离和积累速率。使用与表面养分消耗成比例的可观察参数来确定养分消耗对脱离速率的影响。耗竭参数的增加与杆状细胞剥落后剥离速度的增加相对应,但是耗竭参数在不同实验之间是不可缩放的。这些实验表明,随着营养物质的耗尽,分离力增加。如果这项工作中提出的分离机制更普遍并且适用于其他微生物物种,那么可能会设计出通过动态改变养分供应来控制分离的新方法。

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