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阿利效应的种群遗传后果及后代数量变异的作用。

Population genetic consequences of the Allee effect and the role of offspring-number variation.

作者信息

Wittmann Meike J, Gabriel Wilfried, Metzler Dirk

机构信息

Ludwig-Maximilians-Universität München, Department Biology II, 82152 Planegg-Martinsried, Germany

Ludwig-Maximilians-Universität München, Department Biology II, 82152 Planegg-Martinsried, Germany.

出版信息

Genetics. 2014 Sep;198(1):311-20. doi: 10.1534/genetics.114.167569. Epub 2014 Jul 9.

Abstract

A strong demographic Allee effect in which the expected population growth rate is negative below a certain critical population size can cause high extinction probabilities in small introduced populations. But many species are repeatedly introduced to the same location and eventually one population may overcome the Allee effect by chance. With the help of stochastic models, we investigate how much genetic diversity such successful populations harbor on average and how this depends on offspring-number variation, an important source of stochastic variability in population size. We find that with increasing variability, the Allee effect increasingly promotes genetic diversity in successful populations. Successful Allee-effect populations with highly variable population dynamics escape rapidly from the region of small population sizes and do not linger around the critical population size. Therefore, they are exposed to relatively little genetic drift. It is also conceivable, however, that an Allee effect itself leads to an increase in offspring-number variation. In this case, successful populations with an Allee effect can exhibit less genetic diversity despite growing faster at small population sizes. Unlike in many classical population genetics models, the role of offspring-number variation for the population genetic consequences of the Allee effect cannot be accounted for by an effective-population-size correction. Thus, our results highlight the importance of detailed biological knowledge, in this case on the probability distribution of family sizes, when predicting the evolutionary potential of newly founded populations or when using genetic data to reconstruct their demographic history.

摘要

一种强烈的统计阿利效应,即低于某一临界种群规模时预期种群增长率为负,这可能导致引入的小种群具有很高的灭绝概率。但许多物种会反复被引入同一地点,最终某个种群可能会偶然克服阿利效应。借助随机模型,我们研究了此类成功种群平均拥有多少遗传多样性,以及这如何取决于后代数量变异,这是种群规模随机变异性的一个重要来源。我们发现,随着变异性增加,阿利效应在成功种群中对遗传多样性的促进作用越来越大。具有高度可变种群动态的成功阿利效应种群能迅速逃离小种群规模区域,不会在临界种群规模附近徘徊。因此,它们受到的遗传漂变相对较小。然而,也可以想象,阿利效应本身会导致后代数量变异增加。在这种情况下,具有阿利效应的成功种群尽管在小种群规模时增长更快,但可能表现出较少的遗传多样性。与许多经典种群遗传学模型不同,后代数量变异对阿利效应的种群遗传后果的作用无法通过有效种群大小校正来解释。因此,我们的结果凸显了详细生物学知识的重要性,在这种情况下是关于家庭规模的概率分布,在预测新建立种群的进化潜力或使用遗传数据重建其种群历史时。

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引用本文的文献

1
Genetic diversity in introduced populations with an Allee effect.具有阿利效应的引入种群中的遗传多样性。
Genetics. 2014 Sep;198(1):299-310. doi: 10.1534/genetics.114.167551. Epub 2014 Jul 9.

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Proc Natl Acad Sci U S A. 2012 Jun 5;109(23):8828-33. doi: 10.1073/pnas.1201695109. Epub 2012 May 18.
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