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鸟类嗅球大小的差异反映了异速生长、生态学和系统发育。

Diversity in olfactory bulb size in birds reflects allometry, ecology, and phylogeny.

作者信息

Corfield Jeremy R, Price Kasandra, Iwaniuk Andrew N, Gutierrez-Ibañez Cristian, Birkhead Tim, Wylie Douglas R

机构信息

Department of Psychology, University of Alberta, Edmonton AB, Canada ; Department of Neuroscience, University of Lethbridge, Lethbridge AB, Canada.

Department of Psychology, University of Alberta, Edmonton AB, Canada.

出版信息

Front Neuroanat. 2015 Jul 29;9:102. doi: 10.3389/fnana.2015.00102. eCollection 2015.

Abstract

The relative size of olfactory bulbs (OBs) is correlated with olfactory capabilities across vertebrates and is widely used to assess the relative importance of olfaction to a species' ecology. In birds, variations in the relative size of OBs are correlated with some behaviors; however, the factors that have led to the high level of diversity seen in OB sizes across birds are still not well understood. In this study, we use the relative size of OBs as a neuroanatomical proxy for olfactory capabilities in 135 species of birds, representing 21 orders. We examine the scaling of OBs with brain size across avian orders, determine likely ancestral states and test for correlations between OB sizes and habitat, ecology, and behavior. The size of avian OBs varied with the size of the brain and this allometric relationship was for the most part isometric, although species did deviate from this trend. Large OBs were characteristic of more basal species and in more recently derived species the OBs were small. Living and foraging in a semi-aquatic environment was the strongest variable driving the evolution of large OBs in birds; olfaction may provide cues for navigation and foraging in this otherwise featureless environment. Some of the diversity in OB sizes was also undoubtedly due to differences in migratory behavior, foraging strategies and social structure. In summary, relative OB size in birds reflect allometry, phylogeny and behavior in ways that parallel that of other vertebrate classes. This provides comparative evidence that supports recent experimental studies into avian olfaction and suggests that olfaction is an important sensory modality for all avian species.

摘要

嗅球(OBs)的相对大小与脊椎动物的嗅觉能力相关,并且被广泛用于评估嗅觉对一个物种生态的相对重要性。在鸟类中,嗅球相对大小的变化与一些行为相关;然而,导致鸟类嗅球大小出现高度多样性的因素仍未得到很好的理解。在这项研究中,我们将135种鸟类(代表21个目)的嗅球相对大小作为嗅觉能力的神经解剖学指标。我们研究了鸟类各目嗅球大小与脑大小的比例关系,确定了可能的祖先状态,并测试了嗅球大小与栖息地、生态和行为之间的相关性。鸟类嗅球的大小随脑大小而变化,这种异速生长关系在很大程度上是等比例的,尽管有些物种偏离了这一趋势。嗅球大是更原始物种的特征,而在较新演化出的物种中嗅球较小。在半水生环境中生活和觅食是推动鸟类嗅球增大进化的最强变量;在这个原本缺乏特征的环境中,嗅觉可能为导航和觅食提供线索。嗅球大小的一些差异无疑也归因于迁徙行为、觅食策略和社会结构的不同。总之,鸟类嗅球的相对大小以与其他脊椎动物类群相似的方式反映了异速生长、系统发育和行为。这提供了比较证据,支持了最近对鸟类嗅觉的实验研究,并表明嗅觉是所有鸟类物种的一种重要感觉方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a276/4518324/a91ae6ce973b/fnana-09-00102-g001.jpg

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