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Learning capabilities enhanced in harsh environments: a common garden approach

机译:在恶劣环境下增强学习能力:一种常见的花园方法

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摘要

Previous studies have suggested that the ability to inhabit harsh environments may be linked to advanced learning traits. However, it is not clear if individuals express such traits as a consequence of experiencing challenging environments or if these traits are inherited. To assess the influence of differential selection pressures on variation in aspects of cognition, we used a common garden approach to examine the response to novelty and problem-solving abilities of two populations of black-capped chickadees (Poecile atricapillus). These populations originated from the latitudinal extremes of the species's range, where we had previously demonstrated significant differences in memory and brain morphology in a multi-population study. We found that birds from the harsh northern population, where selection for cognitive abilities is expected to be high, significantly outperformed conspecifics from the mild southern population. Our results imply differences in cognitive abilities that may be inherited, as individuals from both populations were raised in and had experienced identical environmental conditions from 10 days of age. Although our data suggest an effect independent of experience, we cannot rule out maternal effects or experiences within the nest prior to day 10 with our design. Nevertheless, our results support the idea that environmental severity may be an important factor in shaping certain aspects of cognition.
机译:先前的研究表明,适应恶劣环境的能力可能与高级学习特征有关。但是,尚不清楚个体是否由于经历了具有挑战性的环境而表达了这些特征,或者这些特征是否被继承。为了评估差异选择压力对认知方面变异的影响,我们使用了一种常见的花园方法来研究两个黑帽山雀(Poecile atricapillus)对新颖性和解决问题能力的响应。这些种群起源于该物种范围的纬度极值,在先前的一项多族裔研究中,我们曾在此方面证明记忆力和脑形态有显着差异。我们发现,来自北部严峻地区的鸟类对认知能力的选择很高,这些鸟类的能力远胜于来自温和南部地区的物种。我们的研究结果表明,随着年龄的增长,来自这两个种群的个体都已经成长,并且经历了相同的环境条件,因此他们可以遗传的认知能力也有所不同。尽管我们的数据表明效果与经验无关,但我们不能排除设计第10天之前产妇的影响或巢内的经验。然而,我们的结果支持这样的观点,即环境的严重程度可能是影响认知某些方面的重要因素。

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