Department of Biological Sciences, University of Calgary, Calgary, AB, Canada.
FEMS Microbiol Lett. 2010 Jun;307(2):165-74. doi: 10.1111/j.1574-6968.2010.01982.x. Epub 2010 Apr 13.
We have characterized swarming motility in Rhizobium leguminosarum strains 3841 and VF39SM. Swarming was dependent on growth on energy-rich media, and both agar concentration and incubation temperature were critical parameters for surface migration. A cell density-dependent lag period was observed before swarming motility was initiated. Surface migration began 3-5 days after inoculation and a full swarming phenotype was observed 3 weeks after inoculation. The swarming front was preceded by a clear extracellular matrix, from which we failed to detect surfactants. The edge of the swarming front formed by VF39SM was characterized by hyperflagellated cells arranged in rafts, whereas the cells at the point of inoculation were indistinguishable from vegetative cells. Swarmer cells formed by 3841, in contrast, showed a minor increase in flagellation, with each swarmer cell exhibiting an average of three flagellar filaments, compared with an average of two flagella per vegetative cell. Reflective of their hyperflagellation, the VF39SM swarmer cells demonstrated an increased expression of flagellar genes. VF39SM swarmed better than 3841 under all the conditions tested, and the additional flagellation in VF39SM swarm cells may contribute to this difference. Metabolism of the supplemented carbon source appeared to be necessary for surface migration as strains incapable of utilizing the carbon source failed to swarm. We also observed that swarmer cells have increased resistance to several antibiotics.
我们已经描述了根瘤菌 3841 菌株和 VF39SM 菌株的群集运动。群集运动依赖于在富含能量的培养基上的生长,琼脂浓度和孵育温度都是表面迁移的关键参数。在开始群集运动之前,观察到细胞密度依赖性的滞后期。表面迁移在接种后 3-5 天开始,接种后 3 周观察到完全的群集表型。群集前沿之前有一个清晰的细胞外基质,我们未能从中检测到表面活性剂。VF39SM 形成的群集前沿边缘的特征是排列在筏子中的超鞭毛细胞,而接种点的细胞与营养细胞无法区分。相比之下,3841 形成的群集细胞表现出轻微的鞭毛增加,每个群集细胞平均有 3 根鞭毛丝,而营养细胞平均有 2 根鞭毛。VF39SM 群集细胞的超鞭毛反映了它们的高表达flagellar 基因。在所有测试的条件下,VF39SM 的群集能力都优于 3841,VF39SM 群集细胞中额外的鞭毛可能是造成这种差异的原因。补充碳源的代谢似乎对表面迁移是必要的,因为不能利用碳源的菌株无法群集。我们还观察到,群集细胞对几种抗生素的抗性增加。