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格兰维尔豹纹蝶飞行和静息代谢率的遗传力。

Heritability of flight and resting metabolic rates in the Glanville fritillary butterfly.

作者信息

Mattila A L K, Hanski I

机构信息

Metapopulation Research Group, Department of Biosciences, University of Helsinki, Helsinki, Finland.

出版信息

J Evol Biol. 2014 Aug;27(8):1733-43. doi: 10.1111/jeb.12426. Epub 2014 Jun 9.

Abstract

Dispersal capacity is a key life-history trait especially in species inhabiting fragmented landscapes. Evolutionary models predict that, given sufficient heritable variation, dispersal rate responds to natural selection imposed by habitat loss and fragmentation. Here, we estimate phenotypic variance components and heritability of flight and resting metabolic rates (RMRs) in an ecological model species, the Glanville fritillary butterfly, in which flight metabolic rate (FMR) is known to correlate strongly with dispersal rate. We modelled a two-generation pedigree with the animal model to distinguish additive genetic variance from maternal and common environmental effects. The results show that FMR is significantly heritable, with additive genetic variance accounting for about 40% of total phenotypic variance; thus, FMR has the potential to respond to selection on dispersal capacity. Maternal influences on flight metabolism were negligible. Heritability of flight metabolism was context dependent, as in stressful thermal conditions, environmentally induced variation dominated over additive genetic effects. There was no heritability in RMR, which was instead strongly influenced by maternal effects. This study contributes to a mechanistic understanding of the evolution of dispersal-related traits, a pressing question in view of the challenges posed to many species by changing climate and fragmentation of natural habitats.

摘要

扩散能力是一个关键的生活史特征,对于栖息在破碎化景观中的物种尤为重要。进化模型预测,在有足够的可遗传变异的情况下,扩散速率会对栖息地丧失和破碎化所施加的自然选择做出反应。在这里,我们估计了一种生态模式物种——格兰维尔豹纹蝶飞行和静息代谢率(RMR)的表型方差成分和遗传力,已知其飞行代谢率(FMR)与扩散速率密切相关。我们用动物模型构建了一个两代谱系,以区分加性遗传方差与母体和共同环境效应。结果表明,FMR具有显著的遗传力,加性遗传方差约占总表型方差的40%;因此,FMR有可能对扩散能力的选择做出反应。母体对飞行代谢的影响可以忽略不计。飞行代谢的遗传力取决于环境背景,如在应激性热条件下,环境诱导的变异超过了加性遗传效应。RMR没有遗传力,而是受到母体效应的强烈影响。鉴于气候变化和自然栖息地破碎化给许多物种带来的挑战,这一紧迫问题,本研究有助于从机制上理解与扩散相关性状的进化。

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