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厘米级黄色粘球菌群体中滑行运动的自然变异。

Natural variation of gliding motility in a centimetre-scale population of Myxococcus xanthus.

作者信息

Vos Michiel, Velicer Gregory J

机构信息

Max-Planck Institute for Developmental Biology, Tübingen, Germany.

出版信息

FEMS Microbiol Ecol. 2008 Jun;64(3):343-50. doi: 10.1111/j.1574-6941.2008.00484.x. Epub 2008 Apr 10.

Abstract

A major challenge in microbial evolutionary ecology is to understand how fitness-related traits vary in natural populations of microorganisms at defined spatial scales and subsequently to identify the forces that maintain such variation. The Gram-negative soil bacterium Myxococcus xanthus is a model system for the study of gliding motility, which is driven by two complementary motility systems in this species and is central to its social lifestyle. We tested whether the ecological context of a centimetre-scale M. xanthus population allows the coexistence of diverse motility-related phenotypes. Swarming rates among 26 clones isolated at the centimetre scale were found to vary greatly in multiple laboratory environments. This variation appears to be motility-specific, as it is not explained by a correlated variation in intrinsic growth rate. In contrast to the common reference strain DK1622, most isolates swarmed faster on hard agar than on soft agar, highlighting the difficulty of inferring species characteristics from laboratory reference strains. These isolates also varied greatly in swarm morphology and in the effect of nutrient limitation on swarming rate. Our results show that diverse swarming phenotypes can coexist in a small-scale bacterial population.

摘要

微生物进化生态学中的一个主要挑战是了解与适应性相关的性状如何在特定空间尺度下的微生物自然种群中变化,进而确定维持这种变异的力量。革兰氏阴性土壤细菌黄色粘球菌是研究滑行运动性的模型系统,该细菌的滑行运动由两个互补的运动系统驱动,并且对于其社会性生活方式至关重要。我们测试了厘米级黄色粘球菌种群的生态环境是否允许多种与运动性相关的表型共存。在多个实验室环境中发现,从厘米尺度分离出的26个克隆的群体迁移率差异很大。这种变异似乎是运动性特异性的,因为它不能用内在生长速率的相关变异来解释。与常见的参考菌株DK1622不同,大多数分离株在硬琼脂上的群体迁移速度比在软琼脂上快,这突出了从实验室参考菌株推断物种特征的困难。这些分离株在群体形态以及营养限制对群体迁移率的影响方面也有很大差异。我们的结果表明,多种群体迁移表型可以在小规模细菌种群中共存。

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