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细菌中搜索策略的能量学与标度关系

The energetics and scaling of search strategies in bacteria.

作者信息

Mitchell James G

机构信息

School of Biological Sciences, Flinders University, GPO 2100, Adelaide, South Australia 5001, Australia.

出版信息

Am Nat. 2002 Dec;160(6):727-40. doi: 10.1086/343874.

Abstract

The influence of body size on the energetic cost of movement is well studied in animals but has been rarely investigated in bacteria. Here, I calculate the cost of four chemotactic strategies for different-sized bacteria by adding the costs of their locomotion and reorientation. Size differences of 0.1 microm result in 100,000-fold changes in the energetic cost of chemotaxis. The exact cost for any given size is a nonlinear function of flagella length, the minimum speed necessary to detect and respond to a signal, and the gradient of the signal. These parameters are interlinked in such a way that body size and strategy are tightly coupled to particular environmental gradients, offering avenues for explaining and exploring diversity and competition. The analysis here has implications beyond bacteria. Power-law regression through the minimum costs of transport for different kinds of chemotaxis has the same slope as that for swimming animals, suggesting a universal allometric equation for all swimming organisms.

摘要

体型对动物运动能量消耗的影响已得到充分研究,但在细菌中却鲜有探讨。在此,我通过累加不同大小细菌的移动和重新定向成本,计算了四种趋化策略的成本。0.1微米的尺寸差异会导致趋化能量成本发生10万倍的变化。任何给定尺寸的确切成本是鞭毛长度、检测和响应信号所需的最小速度以及信号梯度的非线性函数。这些参数相互关联,使得体型和策略与特定环境梯度紧密耦合,为解释和探索多样性及竞争提供了途径。此处的分析不仅适用于细菌。通过不同趋化类型的最小运输成本进行的幂律回归,其斜率与游泳动物的相同,这表明所有游泳生物存在一个通用的异速生长方程。

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