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

机译:费氏弧菌适应pH胁迫会影响其与夏威夷短尾鱿鱼(Euprymna sco)的共生。

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摘要

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 ( ) and the luminous bacterium was leveraged for a microbial experimental evolution study. experienced adaptation to extreme pH while apart from the squid host. 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. 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 , while symbiont adaptation to alkaline stress diminished these two traits. Oscillatory selection to acid and alkaline stress also improved symbiosis for , 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:参与宿主-微生物相互作用的许多微生物在自由生存期和宿主相关阶段之间摆动。在自由生活阶段对压力的适应如何影响宿主-微生物之间的联系尚不清楚,并且研究不足。为了探讨这一主题,利用夏威夷短尾鱿鱼()与发光细菌之间的共生关系进行了微生物实验进化研究。除了鱿鱼宿主外,还可以适应极端的pH值。连续传代2000代至该微生物的pH增长上限和下限,分别为pH 6.0和10.0。还连续传代2000代以使pH 6.0和10.0波动。向pH胁迫的进化既促进又削弱了共生。微生物向酸性胁迫的进化促进了鱿鱼的定殖并增加了鱿鱼的生物发光,而共生体对碱性胁迫的适应则减弱了这两个特性。酸和碱胁迫的振荡选择也改善了共生关系,但其促进作用小于微生物对酸胁迫的适应作用。总而言之,微生物在自由生活阶段对恶劣环境的适应可能会以以前未曾考虑的方式影响宿主与微生物相互作用的演变。

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