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Long Lag Times and High Velocities in the Motility of Natural Assemblages of Marine Bacteria

机译:海洋细菌天然组合的运动中的滞后时间长和速度高

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摘要

The motility characteristics of natural assemblages of coastal marine bacteria were examined. Initially, less than 10% of the bacteria were motile. A single addition of tryptic soy broth caused an increase in the motile fraction of cells but only after 7 to 12 h. Motility peaked at 15 to 30 h, when more than 80% of cells were motile. These results support the proposal that energy limits motility in the marine environment. Cell speeds changed more than an order of magnitude on timescales of milliseconds and hours. The maximum community speed was 144 (mu)m s(sup-1), and the maximum individual burst velocity was 407 (mu)m s(sup-1). In uniform medium, speed was an inverse function of tryptic soy broth concentration, declining linearly over 0.001 to 1.0%. In media where concentration gradients existed, the mean speed was a function of position in a spatial gradient, changing from 69 to 144 (mu)m s(sup-1) over as little as 15 to 30 (mu)m. The results suggest that marine bacteria are capable of previously undescribed quick shifts in speed that may permit the bacteria to rapidly detect and keep up with positional changes in small nutrient sources. These high speeds and quick shifts may reflect the requirements for useful motility in a turbulent ocean.
机译:研究了沿海海洋细菌的天然组合的运动特征。最初,只有不到10%的细菌能够运动。一次添加胰蛋白酶大豆肉汤仅会在7至12小时后引起细胞运动分数的增加。当超过80%的细胞运动时,运动力在15至30小时达到峰值。这些结果支持了能源限制海洋环境中动力的提议。单元速度在毫秒和小时的时间尺度上变化超过一个数量级。最大群落速度为144μms(sup-1),最大个体爆发速度为407μms(sup-1)。在均匀介质中,速度是胰蛋白酶大豆肉汤浓度的反函数,线性下降超过0.001至1.0%。在存在浓度梯度的介质中,平均速度是空间梯度中位置的函数,范围从69到144μms(sup-1)在15至30μm的范围内变化。结果表明,海洋细菌能够以前所未有的速度快速变化,这可能使细菌能够快速检测并跟上小型营养物来源的位置变化。这些高速和快速的换档可能反映出在动荡的海洋中对有用动力的需求。

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