Cao Mengyi, Goodrich-Blair Heidi
Department of Bacteriology, University of Wisconsin-Madison, Madison, Wisconsin, USA
Department of Bacteriology, University of Wisconsin-Madison, Madison, Wisconsin, USA.
J Bacteriol. 2017 Jul 11;199(15). doi: 10.1128/JB.00883-16. Print 2017 Aug 1.
In mutually beneficial and pathogenic symbiotic associations, microbes must adapt to the host environment for optimal fitness. Both within an individual host and during transmission between hosts, microbes are exposed to temporal and spatial variation in environmental conditions. The phenomenon of phenotypic variation, in which different subpopulations of cells express distinctive and potentially adaptive characteristics, can contribute to microbial adaptation to a lifestyle that includes rapidly changing environments. The environments experienced by a symbiotic microbe during its life history can be erratic or predictable, and each can impact the evolution of adaptive responses. In particular, the predictability of a rhythmic or cyclical series of environments may promote the evolution of signal transduction cascades that allow preadaptive responses to environments that are likely to be encountered in the future, a phenomenon known as adaptive prediction. In this review, we summarize environmental variations known to occur in some well-studied models of symbiosis and how these may contribute to the evolution of microbial population heterogeneity and anticipatory behavior. We provide details about the symbiosis between bacteria and nematodes as a model to investigate the concept of environmental adaptation and adaptive prediction in a microbial symbiosis.
在互利共生和致病共生关系中,微生物必须适应宿主环境以实现最佳适应性。无论是在单个宿主体内还是在宿主之间传播期间,微生物都会面临环境条件的时空变化。表型变异现象,即不同细胞亚群表现出独特且可能具有适应性的特征,可有助于微生物适应包括快速变化环境在内的生活方式。共生微生物在其生命历程中所经历的环境可能不稳定或可预测,而每种情况都会影响适应性反应的进化。特别是,有节奏或周期性的一系列环境的可预测性可能会促进信号转导级联反应的进化,从而使微生物能够对未来可能遇到的环境做出预适应性反应,这一现象称为适应性预测。在本综述中,我们总结了在一些经过充分研究的共生模型中已知会发生的环境变化,以及这些变化如何可能导致微生物群体异质性和预期行为的进化。我们详细介绍了细菌与线虫之间的共生关系,以此作为研究微生物共生中环境适应和适应性预测概念的模型。