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由于突变冲浪,在不断扩大的范围边缘,适应度峰值转移的频率会增加。

The frequency of fitness peak shifts is increased at expanding range margins due to mutation surfing.

作者信息

Burton Olivia J, Travis Justin M J

机构信息

Institute of Biological and Environmental Sciences, University of Aberdeen, Aberdeen AB24 2TZ, United Kingdom.

出版信息

Genetics. 2008 Jun;179(2):941-50. doi: 10.1534/genetics.108.087890. Epub 2008 May 27.

Abstract

Dynamic species' ranges, those that are either invasive or shifting in response to environmental change, are the focus of much recent interest in ecology, evolution, and genetics. Understanding how range expansions can shape evolutionary trajectories requires the consideration of nonneutral variability and genetic architecture, yet the majority of empirical and theoretical work to date has explored patterns of neutral variability. Here we use forward computer simulations of population growth, dispersal, and mutation to explore how range-shifting dynamics can influence evolution on rugged fitness landscapes. We employ a two-locus model, incorporating sign epistasis, and find that there is an increased likelihood of fitness peak shifts during a period of range expansion. Maladapted valley genotypes can accumulate at an expanding range front through a phenomenon called mutation surfing, which increases the likelihood that a mutation leading to a higher peak will occur. Our results indicate that most peak shifts occur close to the expanding front. We also demonstrate that periods of range shifting are especially important for peak shifting in species with narrow geographic distributions. Our results imply that trajectories on rugged fitness landscapes can be modified substantially when ranges are dynamic.

摘要

动态的物种分布范围,即那些因环境变化而具有入侵性或发生变化的范围,是近期生态学、进化生物学和遗传学领域诸多研究的焦点。理解范围扩张如何塑造进化轨迹需要考虑非中性变异和遗传结构,但迄今为止,大多数实证和理论研究都探讨了中性变异的模式。在此,我们利用种群增长、扩散和突变的正向计算机模拟,来探究范围移动动态如何影响崎岖适应度景观上的进化。我们采用一个包含符号上位性的双位点模型,发现范围扩张期间适应度峰值发生转移的可能性增加。适应不良的谷底基因型可通过一种称为“突变冲浪”的现象在扩张的范围前沿积累,这增加了导致更高峰值的突变发生的可能性。我们的结果表明,大多数峰值转移发生在靠近扩张前沿的地方。我们还证明,范围移动期对于地理分布狭窄的物种的峰值转移尤为重要。我们的结果意味着,当范围动态变化时,崎岖适应度景观上的进化轨迹可能会被大幅改变。

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