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奇异变形杆菌群体菌落发育中的周期性现象。

Periodic phenomena in Proteus mirabilis swarm colony development.

作者信息

Rauprich O, Matsushita M, Weijer C J, Siegert F, Esipov S E, Shapiro J A

机构信息

Department of Biochemistry and Molecular Biology, University of Chicago, Illinois 60637-4931, USA.

出版信息

J Bacteriol. 1996 Nov;178(22):6525-38. doi: 10.1128/jb.178.22.6525-6538.1996.

Abstract

Proteus mirabilis colonies exhibit striking geometric regularity. Basic microbiological methods and imaging techniques were used to measure periodic macroscopic events in swarm colony morphogenesis. We distinguished three initial phases (lag phase, first swarming phase, and first consolidation phase) followed by repeating cycles of subsequent swarming plus consolidation phases. Each Proteus swarm colony terrace corresponds to one swarming-plus-consolidation cycle. The duration of the lag phase was dependent upon inoculation density in a way that indicated the operation of both cooperative and inhibitory multicellular effects. On our standard medium, the second and subsequent swarm phases displayed structure in the form of internal waves visible with reflected and dark-field illumination. These internal waves resulted from organization of the migrating bacteria into successively thicker cohorts of swarmer cells. Bacterial growth and motility were independently modified by altering the composition of the growth medium. By varying the glucose concentration in the substrate, it was possible to alter biomass production without greatly affecting the kinetics of colony surface area expansion. By varying the agar concentration in the substrate, initial bacterial biomass production was unaffected but colony expansion dynamics were significantly altered. Higher agar concentrations led to slower, shorter swarm phases and longer consolidation phases. Thus, colony growth was restricted by higher agar concentrations but the overall timing of the swarming-plus-consolidation cycles remained constant. None of a variety of factors which had significant effects on colony expansion altered terracing frequencies at 32 degrees C, but the length of the swarming-plus-consolidation cycle was affected by temperature and medium enrichment. Some clinical isolates displayed significant differences in terracing frequencies at 32 degrees C. Our results defined a number of readily quantifiable parameters in swarm colony development. The data showed no connection between nutrient (glucose) depletion and the onset of different phases in swarm colony morphogenesis. Several observations point to the operation of density-dependent thresholds in controlling the transitions between distinct phases.

摘要

奇异变形杆菌菌落呈现出惊人的几何规则性。采用基本的微生物学方法和成像技术来测量群体菌落形态发生过程中的周期性宏观事件。我们区分出三个初始阶段(延迟期、首次群体游动阶段和首次巩固阶段),随后是后续群体游动加巩固阶段的重复循环。每个奇异变形杆菌群体菌落阶地对应一个群体游动加巩固循环。延迟期的持续时间取决于接种密度,这表明存在协同和抑制性多细胞效应。在我们的标准培养基上,第二个及后续的群体游动阶段呈现出内部波的结构,在反射光和暗场照明下可见。这些内部波是由迁移的细菌组织成相继更厚的群体游动细胞队列所致。通过改变生长培养基的组成,可以独立地改变细菌的生长和运动性。通过改变底物中的葡萄糖浓度,可以改变生物量的产生,而不会对菌落表面积扩展的动力学产生太大影响。通过改变底物中的琼脂浓度,初始细菌生物量的产生不受影响,但菌落扩展动态显著改变。较高的琼脂浓度导致群体游动阶段更慢、更短,巩固阶段更长。因此,菌落生长受到较高琼脂浓度的限制,但群体游动加巩固循环的总体时间保持不变。在32℃时,对菌落扩展有显著影响的多种因素均未改变阶地频率,但群体游动加巩固循环的长度受温度和培养基富集程度的影响。一些临床分离株在32℃时的阶地频率显示出显著差异。我们的结果定义了群体菌落发育中一些易于量化的参数。数据表明,营养物质(葡萄糖)的消耗与群体菌落形态发生不同阶段的开始之间没有关联。一些观察结果表明,在控制不同阶段之间的转变时存在密度依赖性阈值。

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