Haft Rembrandt J F, Mittler John E, Traxler Beth
Department of Microbiology, University of Washington, Seattle, WA 98195-7242, USA.
ISME J. 2009 Jul;3(7):761-9. doi: 10.1038/ismej.2009.22. Epub 2009 Apr 2.
Conjugative plasmids of Gram-negative bacteria have both vertical and horizontal modes of transmission: they are segregated to daughter cells during division, and transferred between hosts by plasmid-encoded conjugative machinery. Despite maintaining horizontal mobility, many plasmids carry fertility inhibition (fin) systems that repress their own conjugative transfer. To assess the ecological basis of self-transfer repression, we compared the invasion of bacterial populations by fin(+) and fin(-) variants of the plasmid R1 using a computational model and co-culture competitions. We observed that the fin(+) variant had a modest cost to the host (measured by reduction in growth rate), while the fin(-) variant incurred a larger cost. In simulations and empirical competitions the fin(-) plasmid invaded cultures quickly, but was subsequently displaced by the fin(+) plasmid. This indicated a competitive advantage to reducing horizontal transmission and allowing increased host replication. Computational simulations predicted that the advantage associated with reduced cost to the host would be maintained over a wide range of environmental conditions and plasmid costs. We infer that vertical transmission in concert with competitive exclusion favour decreased horizontal mobility of plasmids. Similar dynamics may exert evolutionary pressure on parasites, such as temperate bacteriophages and vertically transmitted animal viruses, to limit their rates of horizontal transfer.
在细胞分裂时它们会被分配到子代细胞中,并通过质粒编码的接合机制在宿主之间转移。尽管保持着水平移动性,但许多质粒携带生育抑制(fin)系统来抑制自身的接合转移。为了评估自我转移抑制的生态基础,我们使用计算模型和共培养竞争实验,比较了质粒R1的fin(+)和fin(-)变体对细菌群体的入侵情况。我们观察到,fin(+)变体对宿主有适度的代价(通过生长速率降低来衡量),而fin(-)变体的代价更大。在模拟和实证竞争中,fin(-)质粒迅速侵入培养物,但随后被fin(+)质粒取代。这表明减少水平传播并允许宿主复制增加具有竞争优势。计算模拟预测,与降低宿主代价相关的优势将在广泛的环境条件和质粒代价范围内得以维持。我们推断,垂直传播与竞争排斥共同作用有利于降低质粒的水平移动性。类似的动态过程可能会对寄生虫(如温和噬菌体和垂直传播的动物病毒)施加进化压力,以限制它们的水平转移速率。