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Bacterial cell-to-cell signaling promotes the evolution of resistance to parasitic bacteriophages

机译:细菌细胞间信号传递促进对寄生性噬菌体的抗性进化

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摘要

Abstract The evolution of host?¢????parasite interactions could be affected by intraspecies variation between different host and parasite genotypes. Here we studied how bacterial host cell-to-cell signaling affects the interaction with parasites using two bacteria-specific viruses (bacteriophages) and the host bacterium Pseudomonas aeruginosa that communicates by secreting and responding to quorum sensing (QS) signal molecules. We found that a QS-signaling proficient strain was able to evolve higher levels of resistance to phages during a short-term selection experiment. This was unlikely driven by demographic effects (mutation supply and encounter rates), as nonsignaling strains reached higher population densities in the absence of phages in our selective environment. Instead, the evolved nonsignaling strains suffered relatively higher growth reduction in the absence of the phage, which could have constrained the phage resistance evolution. Complementation experiments with synthetic signal molecules showed that the Pseudomonas quinolone signal (PQS) improved the growth of nonsignaling bacteria in the presence of a phage, while the activation of las and rhl quorum sensing systems had no effect. Together, these results suggest that QS-signaling can promote the evolution of phage resistance and that the loss of QS-signaling could be costly in the presence of phages. Phage?¢????bacteria interactions could therefore indirectly shape the evolution of intraspecies social interactions and PQS-mediated virulence in P. aeruginosa .
机译:摘要宿主与寄生虫基因型之间的种内变异可能会影响宿主之间的相互作用。在这里,我们使用两种细菌特异性病毒(噬菌体)和宿主细菌铜绿假单胞菌(Pseudomonas aeruginosa)通过分泌和响应群体感应(QS)信号分子进行通信,研究了细菌宿主细胞间信号传导如何影响与寄生虫的相互作用。我们发现,在短期选择实验中,精通QS信号的菌株能够对噬菌体产生更高水平的抗性。这是不可能由人口效应(突变供应和遭遇率)驱动的,因为在我们的选择性环境中,无信号菌株在没有噬菌体的情况下达到了更高的种群密度。取而代之的是,在没有噬菌体的情况下,进化出的无信号菌株遭受了相对较高的生长减慢,这可能限制了噬菌体的抗性进化。合成信号分子的互补实验表明,假单胞菌存在时,假单胞菌喹诺酮信号(PQS)改善了无信号细菌的生长,而las和rhl群体感应系统的激活没有作用。总之,这些结果表明,QS信号传导可促进噬菌体抗性的进化,而在存在噬菌体的情况下,QS信号的丧失可能代价高昂。因此,噬菌体细菌相互作用可以间接地影响铜绿假单胞菌种内社会相互作用和PQS介导的毒力的演变。

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