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Adaptation to pH stress by Vibrio fischeri can affect its symbiosis with the Hawaiian bobtail squid ( Euprymna scolopes)

机译:通过<斜视> vibriofischeri 对pH强调的适应可以影响其与夏威夷大巴鱿鱼的共生(<斜体> euprymna scolopes

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Many microorganisms engaged in host-microbe interactions pendulate between a free-living phase and a host-affiliated stage. How adaptation to stress during the free-living phase affects host-microbe associations is unclear and understudied. To explore this topic, the symbiosis between Hawaiian bobtail squid ( Euprymna scolopes ) and the luminous bacterium Vibrio fischeri was leveraged for a microbial experimental evolution study. V. fischeri experienced adaptation to extreme pH while apart from the squid host. V. fischeri was serially passaged for 2000 generations to the lower and upper pH growth limits for this microorganism, which were pH 6.0 and 10.0, respectively. V. fischeri was also serially passaged for 2000 generations to vacillating pH 6.0 and 10.0. Evolution to pH stress both facilitated and impaired symbiosis. Microbial evolution to acid stress promoted squid colonization and increased bioluminescence for V. fischeri , while symbiont adaptation to alkaline stress diminished these two traits. Oscillatory selection to acid and alkaline stress also improved symbiosis for V. fischeri , but the facilitating effects were less than that provided by microbial adaptation to acid stress. In summary, microbial adaptation to harsh environments amid the free-living phase may impact the evolution of host-microbe interactions in ways that were not formerly considered.
机译:许多微生物从事宿主微生物相互作用,在自由活阶段和宿主相关阶段之间。如何适应在自由生活期间的压力影响宿主微生物关联不明确和解读。为了探索这一主题,夏威夷群岛鱿鱼(Euprymna Scolopes)和发光细菌vibriofischeri的共生进行了杠杆,用于微生物实验演化研究。 V.Fischeri除了鱿鱼主机之外,菲斯彻犬经历了对极端pH值的适应。 V.Fischeri分别对2000代和上部pH生长限制进行连续传代,分别为pH 6.0和10.0。 V.Fischeri还串联传代2000代,以摇动pH6.0和10.0。进化到pH强调促进和受损的共生障碍。微生物演化对酸性胁迫促进了乌斯琴氏菌的鱿鱼殖民化和增加的生物发光,而Symbiont适应碱性应激减少了这两个性状。振荡选择对酸和碱性应力也改善了V.Fischeri的共生,但促进的效果小于通过微生物适应对酸性胁迫提供的影响。总之,在自由生活阶段,对恶劣环境的微生物适应可能影响宿主微生物相互作用的进化,以前未考虑的方式。

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