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首页> 外文期刊>Applied and Environmental Microbiology >Enhancement of Swimming Speed Leads to a More-Efficient Chemotactic Response to Repellent
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Enhancement of Swimming Speed Leads to a More-Efficient Chemotactic Response to Repellent

机译:游泳速度的提高导致对驱虫剂的更有效的趋化反应

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Negative chemotaxis refers to the motion of microorganisms away from regions with high concentrations of chemorepellents. In this study, we set controlled gradients of NiCl2, a chemorepellent, in microchannels to quantify the motion of Escherichia coli over a broad range of concentrations. The experimental technique measured the motion of the bacteria in space and time and further related the motion to the local concentration profile of the repellent. Results show that the swimming speed of bacteria increases with an increasing concentration of repellent, which in turn enhances the drift velocity. The contribution of the increased swimming speed to the total drift velocity was in the range of 20 to 40%, with the remaining contribution coming from the modulation of the tumble frequency. A simple model that incorporates receptor dynamics, including adaptation, intracellular signaling, and swimming speed variation, was able to qualitatively capture the observed trend in drift velocity.
机译:负趋化性是指微生物远离具有高化学趋化剂浓度的区域的运动。在这项研究中,我们在微通道中设置了化学趋化剂NiCl2的受控梯度,以量化大范围浓度下大肠杆菌的运动。实验技术测量了细菌在空间和时间上的运动,并将该运动与驱虫剂的局部浓度分布相关联。结果表明,细菌的游泳速度随着驱避剂浓度的增加而增加,从而提高了漂移速度。增加的游泳速度对总漂流速度的贡献在20%至40%的范围内,其余的贡献来自滚转频率的调制。一个简单的模型结合了受体动力学,包括适应性,细胞内信号转导和游泳速度变化,能够定性地捕获观察到的漂移速度趋势。

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