生物
适应(眼睛)
饥饿
饥荒
极端环境
人口
适应性反应
实验进化
资源(消歧)
取舍
进化生物学
生态学
遗传学
基因
细菌
计算机科学
地理
神经科学
人口学
社会学
考古
内分泌学
计算机网络
作者
Megan G. Behringer,Wei-Chin Ho,Samuel F. Miller,Sarah B. Worthan,Zeer Cen,Ryan Stikeleather,Michael F. Lynch
出处
期刊:Current Biology
[Elsevier BV]
日期:2024-03-08
卷期号:34 (7): 1403-1413.e5
被引量:27
标识
DOI:10.1016/j.cub.2024.02.040
摘要
Microbes are evolutionarily robust organisms capable of rapid adaptation to complex stress, which enables them to colonize harsh environments. In nature, microbes are regularly challenged by starvation, which is a particularly complex stress because resource limitation often co-occurs with changes in pH, osmolarity, and toxin accumulation created by metabolic waste. Often overlooked are the additional complications introduced by eventual resource replenishment, as successful microbes must withstand rapid environmental shifts before swiftly capitalizing on replenished resources to avoid invasion by competing species. To understand how microbes navigate trade-offs between growth and survival, ultimately adapting to thrive in environments with extreme fluctuations, we experimentally evolved 16 Escherichia coli populations for 900 days in repeated feast/famine conditions with cycles of 100-day starvation before resource replenishment. Using longitudinal population-genomic analysis, we found that evolution in response to extreme feast/famine is characterized by narrow adaptive trajectories with high mutational parallelism and notable mutational order. Genetic reconstructions reveal that early mutations result in trade-offs for biofilm and motility but trade-ups for growth and survival, as these mutations conferred positively correlated advantages during both short-term and long-term culture. Our results demonstrate how microbes can navigate the adaptive landscapes of regularly fluctuating conditions and ultimately follow mutational trajectories that confer benefits across diverse environments.
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