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Light enough to travel or wise enough to stay? Brain size evolution and migratory behavior in birds

机译:足够轻便可以旅行或足够明智地留下来?鸟类的大脑大小演变和迁徙行为

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摘要

Brain size relative to body size is smaller in migratory than in nonmigratory birds. Two mutually nonexclusive hypotheses had been proposed to explain this association. On the one hand, the "energetic trade-off hypothesis" claims that migratory species were selected to have smaller brains because of the interplay between neural tissue volume and migratory flight. On the other hand, the "behavioral flexibility hypothesis" argues that resident species are selected to have higher cognitive capacities, and therefore larger brains, to enable survival in harsh winters, or to deal with environmental seasonality. Here, I test the validity and setting of these two hypotheses using 1466 globally distributed bird species. First, I show that the negative association between migration distance and relative brain size is very robust across species and phylogeny. Second, I provide strong support for the energetic trade-off hypothesis, by showing the validity of the trade-off among long-distance migratory species alone. Third, using resident and short-distance migratory species, I demonstrate that environmental harshness is associated with enlarged relative brain size, therefore arguably better cognition. My study provides the strongest comparative support to date for both the energetic trade-off and the behavioral flexibility hypotheses, and highlights that both mechanisms contribute to brain size evolution, but on different ends of the migratory spectrum.
机译:与非迁徙鸟类相比,候鸟的大脑大小相对于身体大小要小。已经提出了两个互不排斥的假设来解释这种联系。一方面,“能量折衷假说”声称,由于神经组织体积和迁徙飞行之间的相互作用,使迁徙物种的大脑选择较小。另一方面,“行为灵活性假说”认为,选择常驻物种具有较高的认知能力,因此需要较大的大脑,以便能够在严冬中生存或应对环境季节性变化。在这里,我使用1466种全球分布的鸟类来检验这两个假设的有效性和设置。首先,我表明迁移距离与相对大脑大小之间的负相关在物种和系统发育中非常稳健。其次,通过展示仅在长距离迁徙物种之间进行权衡的有效性,我为高能权衡假设提供了有力的支持。第三,我使用常驻和短途迁徙物种,证明环境恶劣与相对大脑大小的增加有关,因此可以说是更好的认知。我的研究为精力充沛的权衡和行为灵活性假设提供了迄今为止最强有力的比较支持,并强调了这两种机制都有助于大脑大小的进化,但在迁移谱的不同末端。

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