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适应是受进化过程中动态环境中环境变化复杂性的影响。

Adaptation is influenced by the complexity of environmental change during evolution in a dynamic environment.

机构信息

Department of Genetics, Stanford University, Stanford, California, United States of America.

出版信息

PLoS Genet. 2021 Jan 25;17(1):e1009314. doi: 10.1371/journal.pgen.1009314. eCollection 2021 Jan.

Abstract

The environmental conditions of microorganisms' habitats may fluctuate in unpredictable ways, such as changes in temperature, carbon source, pH, and salinity to name a few. Environmental heterogeneity presents a challenge to microorganisms, as they have to adapt not only to be fit under a specific condition, but they must also be robust across many conditions and be able to deal with the switch between conditions itself. While experimental evolution has been used to gain insight into the adaptive process, this has largely been in either unvarying or consistently varying conditions. In cases where changing environments have been investigated, relatively little is known about how such environments influence the dynamics of the adaptive process itself, as well as the genetic and phenotypic outcomes. We designed a systematic series of evolution experiments where we used two growth conditions that have differing timescales of adaptation and varied the rate of switching between them. We used lineage tracking to follow adaptation, and whole genome sequenced adaptive clones from each of the experiments. We find that both the switch rate and the order of the conditions influences adaptation. We also find different adaptive outcomes, at both the genetic and phenotypic levels, even when populations spent the same amount of total time in the two different conditions, but the order and/or switch rate differed. Thus, in a variable environment adaptation depends not only on the nature of the conditions and phenotypes under selection, but also on the complexity of the manner in which those conditions are combined to result in a given dynamic environment.

摘要

微生物栖息地的环境条件可能会以不可预测的方式波动,例如温度、碳源、pH 值和盐度等的变化。环境异质性对微生物构成了挑战,因为它们不仅要适应特定条件下的生存,还要在许多条件下保持稳健,并能够应对条件之间的转换。虽然实验进化已被用于深入了解适应过程,但这在很大程度上仅限于不变或持续变化的条件。在研究不断变化的环境的情况下,对于这种环境如何影响适应过程本身的动态以及遗传和表型结果,我们知之甚少。我们设计了一系列系统的进化实验,在这些实验中,我们使用了两种具有不同适应时间尺度的生长条件,并改变了它们之间的切换速度。我们使用谱系追踪来跟踪适应过程,并对每个实验中的适应性克隆进行全基因组测序。我们发现,切换速度和条件顺序都会影响适应。我们还发现,即使种群在两种不同条件下花费的总时间相同,但条件的顺序和/或切换速度不同,也会导致遗传和表型水平的不同适应结果。因此,在一个多变的环境中,适应不仅取决于选择下的条件和表型的性质,还取决于这些条件组合以产生给定动态环境的复杂程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe5c/7861553/0aab72f1e768/pgen.1009314.g001.jpg

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