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You cannot tell a book by looking at the cover: Cryptic complexity inbacterial evolution

机译:您无法通过看书的封面告诉书:细菌进化

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摘要

Do genetically closely related organisms under identical, but strong selection pressure converge to a common resistant genotype or will they diverge to different genomic solutions? This question gets at the heart of how rough is the fitness landscape in the local vicinity of two closely related strains under stress. We chose a Growth Advantage in Stationary Phase (GASP) Escherichia coli strain to address this question because the GASP strain has very similar fitness to the wild-type (WT) strain in the absence of metabolic stress but in the presence of metabolic stress continues to divide and does not enter into stationary phase. We find that under strong antibiotic selection pressure by the fluoroquinolone antibiotic ciprofloxacin in a complex ecology that the GASP strain rapidly evolves in under 20 h missense mutation in gyrA only 2 amino acids removed from the WT strain indicating a convergent solution, yet does not evolve the other 3 mutations of the WT strain. Further the GASP strain evolves a prophage e14 excision which completely inhibits biofilm formation in the mutant strain, revealing the hidden complexity of E. coli evolution to antibiotics as a function of selection pressure. We conclude that there is a cryptic roughness to fitness landscapes in the absence of stress.
机译:在相同但强大的选择压力下,与遗传密切相关的生物会融合为共同的抗药性基因型,还是会分化为不同的基因组解决方案?这个问题的核心是在压力下两个紧密相关的菌株附近的健身状况有多粗糙。我们选择了静止期生长优势(GASP)大肠杆菌菌株来解决该问题,因为在没有代谢应激但存在代谢应激的情况下,GASP菌株与野生型(WT)菌株的适应性非常相似。分而未进入平稳阶段。我们发现,在氟喹诺酮类抗生素环丙沙星的强大抗生素选择压力下,在复杂的生态环境中,GASP菌株在20 h的gyrA错义突变中迅速进化,仅从WT菌株中去除了2个氨基酸,表明溶液收敛,但没有进化出WT菌株的其他3个突变。此外,GASP菌株进化出了一个噬菌体e14切除物,该切除物完全抑制了突变菌株中生物膜的形成,揭示了大肠杆菌随选择压力而进化为抗生素的隐藏复杂性。我们得出结论,在没有压力的情况下,健身景观存在隐秘的粗糙度。

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