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Brain size innovative propensity and migratory behaviour in temperate Palaearctic birds

机译:温带古太平洋鸟类的脑大小创新倾向和迁徙行为

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摘要

The evolution of migration in birds remains an outstanding, unresolved question in evolutionary ecology. A particularly intriguing question is why individuals in some species have been selected to migrate, whereas in other species they have been selected to be sedentary. In this paper, we suggest that this diverging selection might partially result from differences among species in the behavioural flexibility of their responses to seasonal changes in the environment. This hypothesis is supported in a comparative analysis of Palaearctic passerines. First, resident species tend to rely more on innovative feeding behaviours in winter, when food is harder to find, than in other seasons. Second, species with larger brains, relative to their body size, and a higher propensity for innovative behaviours tend to be resident, while less flexible species tend to be migratory. Residence also appears to be less likely in species that occur in more northerly regions, exploit temporally available food sources, inhabit non-buffered habitats and have smaller bodies. Yet, the role of behavioural flexibility as a response to seasonal environments is largely independent of these other factors. Therefore, species with greater foraging flexibility seem to be able to cope with seasonal environments better, while less flexible species are forced to become migratory.
机译:鸟类迁移的进化在进化生态学中仍然是一个悬而未决的问题。一个特别有趣的问题是,为什么某些物种中的个体被选择迁移,而其他物种中的个体却被定为久坐。在本文中,我们建议这种不同的选择可能部分是由于物种之间对环境季节性变化的反应行为灵活性上的差异所致。该假设在古北洋雀形目的比较分析中得到支持。首先,与其他季节相比,冬季(食物较难找到)中的常驻物种更倾向于依靠创新的喂养方式。第二,相对于它们的体型,具有较大大脑的物种和进行创新行为的倾向更高,而那些较不灵活的物种则倾向于迁徙。在更北部地区出现的物种,利用暂时可利用的食物来源,居住在非缓冲生境中并且具有较小身体的物种中,似乎也不太可能居住。然而,行为灵活性作为对季节性环境的响应的作用在很大程度上与其他因素无关。因此,具有较高觅食灵活性的物种似乎能够更好地应对季节性环境,而柔韧性较低的物种则被迫迁徙。

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