从游泳到群集:大肠杆菌细胞的二维运动。

IF 1.4
Jean-Marie Swiecicki, Olesksii Sliusarenko, Douglas B Weibel
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引用次数: 57

摘要

当被限制在琼脂表面的薄层液体中时,大肠杆菌群集细胞协调它们的运动。细胞、细胞对和细胞群的运动和动力学可以在聚合物微流控系统中重现和研究,该系统被设计用于在无滑移表面之间的薄层流体中限制群集细胞的运动。在这些环境中,细长的、平稳游动的大肠杆菌细胞的运动再现了在群体群落前沿观察到的细胞群的行为,并展示了流体的物理维度和细菌细胞行为之间的微妙平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

From swimming to swarming: Escherichia coli cell motility in two-dimensions.

From swimming to swarming: Escherichia coli cell motility in two-dimensions.

From swimming to swarming: Escherichia coli cell motility in two-dimensions.

From swimming to swarming: Escherichia coli cell motility in two-dimensions.

Escherichia coli swarmer cells coordinate their movement when confined in thin layers of fluid on agar surfaces. The motion and dynamics of cells, pairs of cells, and packs of cells can be recapitulated and studied in polymer microfluidic systems that are designed to constrain swarmer cell movement in thin layers of fluid between no-slip surfaces. The motion of elongated, smooth swimming E. coli cells in these environments reproduces the behavior of packs of cells observed at the leading edge of swarming communities and demonstrates the delicate balance between the physical dimensions of fluids and bacterial cell behavior.

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