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Host-selected mutations converging on a global regulator drive an adaptive leap towards symbiosis in bacteria

机译:宿主选择的突变汇聚到全局调节子上从而推动细菌向共生的方向飞跃

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摘要

Host immune and physical barriers protect against pathogens but also impede the establishment of essential symbiotic partnerships. To reveal mechanisms by which beneficial organisms adapt to circumvent host defenses, we experimentally evolved ecologically distinct bioluminescent Vibrio fischeri by colonization and growth within the light organs of the squid Euprymna scolopes. Serial squid passaging of bacteria produced eight distinct mutations in the binK sensor kinase gene, which conferred an exceptional selective advantage that could be demonstrated through both empirical and theoretical analysis. Squid-adaptive binK alleles promoted colonization and immune evasion that were mediated by cell-associated matrices including symbiotic polysaccharide (Syp) and cellulose. binK variation also altered quorum sensing, raising the threshold for luminescence induction. Preexisting coordinated regulation of symbiosis traits by BinK presented an efficient solution where altered BinK function was the key to unlock multiple colonization barriers. These results identify a genetic basis for microbial adaptability and underscore the importance of hosts as selective agents that shape emergent symbiont populations.>DOI:
机译:宿主的免疫和物理屏障可以抵御病原体的侵害,但也阻碍了基本共生伙伴关系的建立。为了揭示有益生物适应周围宿主防御的机制,我们通过在鱿鱼虾up的轻器官内定植和生长,实验性地进化出生态上独特的生物发光费氏弧菌。细菌的连续鱿鱼传代在binK传感器激酶基因中产生了8个不同的突变,这赋予了特殊的选择性优势,这可以通过经验和理论分析来证明。乌贼自适应binK等位基因促进了定居和免疫逃避,这是由细胞相关基质(包括共生多糖(Syp)和纤维素)介导的。 binK变化还改变了群体感应,从而提高了诱导发光的阈值。 BinK预先存在的共生特征的协调调控提出了一种有效的解决方案,其中改变的BinK功能是解锁多个殖民化障碍的关键。这些结果确定了微生物适应性的遗传基础,并强调了宿主作为塑造新兴共生种群的选择剂的重要性。> DOI:

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