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微生物中的记忆:量化细菌中依赖历史的行为

Memory in microbes: quantifying history-dependent behavior in a bacterium.

作者信息

Wolf Denise M, Fontaine-Bodin Lisa, Bischofs Ilka, Price Gavin, Keasling Jay, Arkin Adam P

机构信息

Physical Biosciences Division, Lawrence Berkeley National Laboratory, Berkeley, California, USA.

出版信息

PLoS One. 2008 Feb 27;3(2):e1700. doi: 10.1371/journal.pone.0001700.

Abstract

Memory is usually associated with higher organisms rather than bacteria. However, evidence is mounting that many regulatory networks within bacteria are capable of complex dynamics and multi-stable behaviors that have been linked to memory in other systems. Moreover, it is recognized that bacteria that have experienced different environmental histories may respond differently to current conditions. These "memory" effects may be more than incidental to the regulatory mechanisms controlling acclimation or to the status of the metabolic stores. Rather, they may be regulated by the cell and confer fitness to the organism in the evolutionary game it participates in. Here, we propose that history-dependent behavior is a potentially important manifestation of memory, worth classifying and quantifying. To this end, we develop an information-theory based conceptual framework for measuring both the persistence of memory in microbes and the amount of information about the past encoded in history-dependent dynamics. This method produces a phenomenological measure of cellular memory without regard to the specific cellular mechanisms encoding it. We then apply this framework to a strain of Bacillus subtilis engineered to report on commitment to sporulation and degradative enzyme (AprE) synthesis and estimate the capacity of these systems and growth dynamics to 'remember' 10 distinct cell histories prior to application of a common stressor. The analysis suggests that B. subtilis remembers, both in short and long term, aspects of its cell history, and that this memory is distributed differently among the observables. While this study does not examine the mechanistic bases for memory, it presents a framework for quantifying memory in cellular behaviors and is thus a starting point for studying new questions about cellular regulation and evolutionary strategy.

摘要

记忆通常与高等生物相关联,而非细菌。然而,越来越多的证据表明,细菌内部的许多调控网络能够展现出复杂的动态变化和多稳态行为,而这些行为在其他系统中与记忆相关。此外,人们认识到,经历过不同环境历史的细菌可能对当前环境条件做出不同反应。这些“记忆”效应可能并非仅仅是控制适应性的调控机制或代谢储备状态的偶然现象。相反,它们可能受到细胞的调控,并在细菌参与的进化博弈中赋予其适应性。在此,我们提出历史依赖性行为是记忆的一种潜在重要表现形式,值得进行分类和量化。为此,我们开发了一个基于信息论的概念框架,用于衡量微生物记忆的持久性以及历史依赖性动态中编码的关于过去的信息量。这种方法产生了一种细胞记忆的现象学度量,而无需考虑编码它的具体细胞机制。然后,我们将这个框架应用于一株经过改造的枯草芽孢杆菌,该菌株用于报告对芽孢形成和降解酶(AprE)合成的趋向性,并估计这些系统以及生长动态在施加共同应激源之前“记住”10种不同细胞历史的能力。分析表明,枯草芽孢杆菌在短期和长期内都能记住其细胞历史的某些方面,并且这种记忆在可观测指标中的分布有所不同。虽然这项研究没有考察记忆的机制基础,但它提供了一个量化细胞行为中记忆的框架,因此是研究有关细胞调控和进化策略新问题的起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ffa/2264733/700015ef0d84/pone.0001700.g001.jpg

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