Vermeersch Lieselotte, Cool Lloyd, Gorkovskiy Anton, Voordeckers Karin, Wenseleers Tom, Verstrepen Kevin J
VIB - KU Leuven Center for Microbiology, Leuven, Belgium.
CMPG Laboratory of Genetics and Genomics, KU Leuven, Leuven, Belgium.
Front Microbiol. 2022 Oct 10;13:1004488. doi: 10.3389/fmicb.2022.1004488. eCollection 2022.
Microbes are constantly confronted with changes and challenges in their environment. A proper response to these environmental cues is needed for optimal cellular functioning and fitness. Interestingly, past exposure to environmental cues can accelerate or boost the response when this condition returns, even in daughter cells that have not directly encountered the initial cue. Moreover, this behavior is mostly epigenetic and often goes hand in hand with strong heterogeneity in the strength and speed of the response between isogenic cells of the same population, which might function as a bet-hedging strategy. In this review, we discuss examples of history-dependent behavior (HDB) or "memory," with a specific focus on HDB in fluctuating environments. In most examples discussed, the lag time before the response to an environmental change is used as an experimentally measurable proxy for HDB. We highlight different mechanisms already implicated in HDB, and by using HDB in fluctuating carbon conditions as a case study, we showcase how the metabolic state of a cell can be a key determining factor for HDB. Finally, we consider possible evolutionary causes and consequences of such HDB.
微生物在其环境中不断面临变化和挑战。为了实现最佳的细胞功能和适应性,需要对这些环境信号做出适当反应。有趣的是,过去接触过环境信号,即使在未直接遇到初始信号的子细胞中,当这种情况再次出现时,也能加速或增强反应。此外,这种行为大多是表观遗传的,并且在同一种群的同基因细胞之间,反应的强度和速度往往存在很强的异质性,这可能是一种风险对冲策略。在本综述中,我们讨论了历史依赖行为(HDB)或“记忆”的例子,特别关注波动环境中的HDB。在讨论的大多数例子中,对环境变化做出反应之前的滞后时间被用作HDB的实验可测量指标。我们强调了已经与HDB相关的不同机制,并以波动碳条件下的HDB为例,展示了细胞的代谢状态如何成为HDB的关键决定因素。最后,我们考虑了这种HDB可能的进化原因和后果。