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Natural assemblages of marine bacteria exhibiting high-speed motility and large accelerations.

机译:海洋细菌的天然组合显示出高速运动性和大加速度。

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摘要

Natural communities of marine bacteria, an isolate (FMB-Bf3) from one marine community, and Escherichia coli were examined by video microscopy for the magnitude and uniformity of their speed. Natural communities formed tight microswarms that showed higher speeds (mean = 230 microns s-1) than did E. coli (15 microns s-1) or FMB-Bf3 (mean = 62 microns s-1). Outside the microswarms, the marine bacteria slowed to 45 microns s-1. Between turns, in mid run, and while travelling in straight lines, the natural-community bacteria accelerated up to 1,450 microns s-2 while the cultured bacteria showed maximum accelerations of 70 and 166 microns s-2. The frequency distribution of speed change for the marine bacteria was skewed towards a few large negative accelerations and a range of positive accelerations. The general pattern was one of relatively slow increases in speed followed by abrupt declines. The results indicate that the mechanical generation and energetic maintenance, as well as the environmental function, of bacterial motility need reappraisal. We conclude that the standard bacterial motility parameters of low and uniform speed, derived from culture-based studies, are not necessarily applicable to marine bacterial communities.
机译:通过视频显微镜检查了海洋细菌的自然群落,来自一个海洋群落的分离株(FMB-Bf3)和大肠杆菌的速度大小和均匀性。自然群落形成紧密的微群,显示出比大肠杆菌(15微米s-1)或FMB-Bf3(平均= 62微米s-1)更高的速度(平均= 230微米s-1)。在微群外,海洋细菌减慢到45微米s-1。在转弯之间,中游期间以及直线行驶时,自然群落细菌的最大加速度可达1,450微米s-2,而培养的细菌最大加速度为70和166微米s-2。海洋细菌速度变化的频率分布偏向一些大的负加速度和一定范围的正加速度。一般模式是速度相对缓慢的增长之一,然后突然下降。结果表明,细菌运动的机械生成和能量维持以及环境功能需要重新评估。我们得出的结论是,基于培养的研究得出的低速和匀速的标准细菌运动参数不一定适用于海洋细菌群落。

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