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厌氧球形红细菌对时间刺激的行为反应。

The behavioural response of anaerobic Rhodobacter sphaeroides to temporal stimuli.

作者信息

Packer Helen L, Gauden David E, Armitage Judith P

机构信息

Microbiology Unit, Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.

出版信息

Microbiology (Reading). 1996 Mar;142 ( Pt 3):593-599. doi: 10.1099/13500872-142-3-593.

Abstract

The behavioural response of Rhodobacter sphaeroides to temporal changes in the concentration of chemoeffectors, and to stimuli affecting electron transport, was analysed using tethered cells. Populations of photosynthetically grown tethered cells of R. sphaeroides showed a transient response, a stop followed by adaptation, to a stepwise reduction in the concentration of chemoattractants (such as organic acids or sugars) and terminal electron acceptors. A step-down response was also measured in free swimming cells to a reduction in light intensity. As this response appears to apply to all effectors this suggests that there is a sensory pathway in anaerobically grown R. sphaeroides which responds primarily to a reduction in a stimulus. R. sphaeroides therefore responds when moving down a concentration gradient. This is the inverse of the classical Escherichia coli-Salmonella typhimurium model of bacterial sensory behaviour in which bacteria respond primarily when there is an increase in an attractant concentration, i.e. when moving up a gradient. R. sphaeroides does show a chemokinetic response to an increase in concentration of a limited number of compounds but this response is sustained and accompanied by an increase in the rate of flagellar rotation and therefore not simply equivalent to the transient increase in smooth swimming measured in E. coli on addition of an attractant.

摘要

利用固定化细胞分析了球形红杆菌对化学效应物浓度的时间变化以及对影响电子传递的刺激的行为反应。光合生长的球形红杆菌固定化细胞群体对化学引诱剂(如有机酸或糖类)和末端电子受体浓度的逐步降低表现出瞬时反应,即先是停止然后适应。在自由游动的细胞中也检测到了对光强度降低的下降反应。由于这种反应似乎适用于所有效应物,这表明在厌氧生长的球形红杆菌中存在一条主要对刺激减少做出反应的感觉途径。因此,球形红杆菌在沿着浓度梯度下降时会做出反应。这与经典的大肠杆菌 - 鼠伤寒沙门氏菌细菌感觉行为模型相反,在该模型中,细菌主要在引诱剂浓度增加时做出反应,即沿着梯度上升时。球形红杆菌确实对有限数量化合物浓度的增加表现出化学动力学反应,但这种反应是持续的,并且伴随着鞭毛旋转速率的增加,因此并不简单等同于在大肠杆菌中添加引诱剂时测量到的平滑游动的瞬时增加。

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