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巢居生态学不能解释蜜蜂物种之间的慢-快认知差异。

Nesting ecology does not explain slow-fast cognitive differences among honeybee species.

机构信息

Department of Biology, Colorado State University, 1878 Campus Delivery, Fort Collins, CO, 80523, USA.

National Centre for Biological Sciences, Bangalore, India.

出版信息

Anim Cogn. 2021 Nov;24(6):1227-1235. doi: 10.1007/s10071-021-01515-2. Epub 2021 Apr 27.

Abstract

Slow-fast behavioral and life history differences have been tied to slow-fast variation in cognition that is part of the general speed-accuracy tradeoff. While there is growing evidence for such cognitive variation and its association with behavior and life history at the intraspecific level, it is unknown if a similar relationship extends to the interspecific level. Since interspecific differences in cognition have been shown to be a function of ecology and life history, such differences should be reflected in multiple traits that comprise the slow-fast cognitive axis. In this study, by measuring multiple cognitive traits in individuals, we tested for differences in the cognitive phenotype among four honeybee species, which differ in their behavior and life history in a manner that is associated with differences in their nesting ecology. Our results indicate that a set of cognitive traits consistently covary within each species, resulting in slow and fast cognitive phenotypes that largely meet the predictions of the speed-accuracy tradeoff. We also find that the four species group into two distinct clusters on a slow-fast cognitive axis, although their positions do not align with the known differences in their life history and nesting ecology. We instead find that cognitive differences among the four species are correlated with their brain size. We discuss the possible implications of these results for the role of ecology on slow-fast cognitive differences and the evolution of cognition.

摘要

慢快行为和生活史差异与认知中的慢快变化有关,而认知的慢快变化是一般速度-准确性权衡的一部分。虽然越来越多的证据表明在种内水平上存在这种认知变化及其与行为和生活史的关联,但尚不清楚这种关系是否扩展到种间水平。由于认知的种间差异是生态和生活史的函数,因此这些差异应该反映在构成慢快认知轴的多个特征中。在这项研究中,我们通过测量个体的多种认知特征,测试了四种蜜蜂物种之间在认知表型上的差异,这些物种在行为和生活史方面存在差异,这些差异与它们的筑巢生态有关。我们的结果表明,一组认知特征在每个物种内始终一致地共变,从而产生了符合速度-准确性权衡的慢快认知表型。我们还发现,这四个物种在慢快认知轴上分为两个不同的集群,尽管它们的位置与它们的生活史和筑巢生态的已知差异并不一致。相反,我们发现这四个物种之间的认知差异与它们的大脑大小有关。我们讨论了这些结果对生态对慢快认知差异的作用以及认知进化的可能影响。

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