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伯格曼法则的检验机制:三个雀形目鸟类种群的体型表型下降但无遗传变化。

Testing mechanisms of Bergmann's rule: phenotypic decline but no genetic change in body size in three passerine bird populations.

机构信息

Institute of Evolutionary Biology, School of Biological Sciences, University of Edinburgh, Edinburgh, United Kingdom.

出版信息

Am Nat. 2011 Aug;178(2):202-13. doi: 10.1086/660834.

Abstract

Bergmann's rule predicts a decrease in body size with increasing temperature and has much empirical support. Surprisingly, we know very little about whether "Bergmann size clines" are due to a genetic response or are a consequence of phenotypic plasticity. Here, we use data on body size (mass and tarsus length) from three long-term (1979-2008) study populations of great tits (Parus major) that experienced a temperature increase to examine mechanisms behind Bergmann's rule. We show that adult body mass decreased over the study period in all populations and that tarsus length increased in one population. Both body mass and tarsus length were heritable and under weak positive directional selection, predicting an increase, rather than a decrease, in body mass. There was no support for microevolutionary change, and thus the observed declines in body mass were likely a result of phenotypic plasticity. Interestingly, this plasticity was not in direct response to temperature changes but seemed to be due to changes in prey dynamics. Our results caution against interpreting recent phenotypic body size declines as adaptive evolutionary responses to temperature changes and highlight the importance of considering alternative environmental factors when testing size clines.

摘要

贝格曼法则预测,随着温度的升高,体型会变小,并且有大量的经验证据支持。令人惊讶的是,我们对“贝格曼体型梯度”是由于遗传反应还是表型可塑性的结果知之甚少。在这里,我们使用来自三个长期(1979-2008 年)大朱雀(Parus major)研究种群的数据,这些种群经历了温度升高,以研究贝格曼法则背后的机制。我们发现,在所有种群中,成年体质量在研究期间都下降了,而在一个种群中跗跖长度增加了。体质量和跗跖长度都是可遗传的,并受到弱正向定向选择的影响,这表明体质量会增加,而不是减少。没有支持微观进化变化的证据,因此观察到的体质量下降很可能是表型可塑性的结果。有趣的是,这种可塑性并不是对温度变化的直接反应,而是似乎是由于猎物动态的变化。我们的研究结果告诫人们不要将最近的表型体质量下降解释为对温度变化的适应性进化反应,并强调在测试体型梯度时,考虑替代环境因素的重要性。

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