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首页> 外文期刊>Journal of Theoretical Biology >TWO ALTERNATIVE MODELS FOR SPONTANEOUS FLAGELLAR MOTOR SWITCHING IN HALOBACTERIUM SALINARIUM
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TWO ALTERNATIVE MODELS FOR SPONTANEOUS FLAGELLAR MOTOR SWITCHING IN HALOBACTERIUM SALINARIUM

机译:盐卤菌自发性舌肌运动的两种替代模型

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Halobacteria are light-sensitive microorganisms which swim by means of rotating flagella. Under constant environmental conditions, they reverse their swimming direction about every 10-30 s. This is due to spontaneous switchings of the flagellar motors from clockwise to counterclockwise rotation or vice versa. However, it is unknown how the direction of rotation is regulated. In this paper, two stochastic models which could explain the characteristics of sequences of spontaneous switching events are discussed. The process is described in terms of a ''motor switch'' cyclically running through a sequence of states and triggering a reversal whenever a cycle is complete. Referring to previously stated hypotheses, modelling is based on the assumption that transitions between the states of the switch either occur with constant probability per unit time or are actively regulated by an endogeneous biochemical oscillator. It is shown that both models yield a good description of the experimental data, though they are mutually exclusive. (C) 1996 Academic Press Limited [References: 31]
机译:盐细菌是通过旋转的鞭毛游动的光敏微生物。在恒定的环境条件下,它们大约每10-30 s反转游泳方向。这是由于鞭毛马达自发地从顺时针旋转到逆时针旋转,反之亦然。但是,如何调节旋转方向是未知的。本文讨论了两个可以解释自发切换事件序列特征的随机模型。根据“电动机开关”来描述该过程,该“电动机开关”周期性地循环经过一系列状态,并在一个周期完成时触发反向。参考先前陈述的假设,建模基于以下假设:开关状态之间的转换要么以每单位时间恒定的概率发生,要么由内生化生振荡器主动调节。结果表明,尽管两个模型互斥,但它们都能很好地描述实验数据。 (C)1996 Academic Press Limited [参考号:31]

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