信鸽和其他鸽子品种海马形成的定量解剖:对空间认知的影响。

IF 2.7 3区 医学 Q1 ANATOMY & MORPHOLOGY
Audrey E M Guyonnet, Kelsey J Racicot, Benjamin Brinkman, Andrew N Iwaniuk
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引用次数: 0

摘要

对家养动物的特定行为和身体特征的人工选择导致了品种繁多。最广为人知的行为选择例子之一是信鸽(Columba livia),它经历了快速有效导航的激烈选择,可能导致海马形成的重大解剖变化。之前对信鸽和其他鸽子品种的神经解剖学比较得出了不同的结果,但只关注体积。我们通过测量信鸽和其他七个品种的海马结构和隔区的体积、神经元数量和神经元密度,完成了一项更系统的测试,以了解信鸽和其他品种鸽子海马结构解剖结构的差异。总的来说,我们发现不同品种的海马形成体积差异不大,但神经元数量和密度存在显著差异。更具体地说,信鸽比大多数其他品种的鸽子有更多的海马神经元和更高的密度,其神经元数量几乎是野鸽的两倍。这些发现表明,神经元数量可能是信鸽归巢行为的一个重要组成部分。我们的数据也首次提供了神经元密度可以通过人工选择来改变的证据,这对驯化和杂交变异的解剖学和行为学研究具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The quantitative anatomy of the hippocampal formation in homing pigeons and other pigeon breeds: implications for spatial cognition.

Artificial selection for specific behavioural and physical traits in domesticated animals has resulted in a wide variety of breeds. One of the most widely recognized examples of behavioural selection is the homing pigeon (Columba livia), which has undergone intense selection for fast and efficient navigation, likely resulting in significant anatomical changes to the hippocampal formation. Previous neuroanatomical comparisons between homing and other pigeon breeds yielded mixed results, but only focused on volumes. We completed a more systematic test for differences in hippocampal formation anatomy between homing and other pigeon breeds by measuring volumes, neuron numbers and neuron densities in the hippocampal formation and septum across homing pigeons and seven other breeds. Overall, we found few differences in hippocampal formation volume across breeds, but large, significant differences in neuron numbers and densities. More specifically, homing pigeons have significantly more hippocampal neurons and at higher density than most other pigeon breeds, with nearly twice as many neurons as feral pigeons. These findings suggest that neuron numbers may be an important component of homing behaviour in homing pigeons. Our data also provide the first evidence that neuronal density can be modified by artificial selection, which has significant implications for the study of domestication and interbreed variation in anatomy and behaviour.

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来源期刊
Brain Structure & Function
Brain Structure & Function 医学-解剖学与形态学
CiteScore
6.00
自引率
6.50%
发文量
168
审稿时长
8 months
期刊介绍: Brain Structure & Function publishes research that provides insight into brain structure−function relationships. Studies published here integrate data spanning from molecular, cellular, developmental, and systems architecture to the neuroanatomy of behavior and cognitive functions. Manuscripts with focus on the spinal cord or the peripheral nervous system are not accepted for publication. Manuscripts with focus on diseases, animal models of diseases, or disease-related mechanisms are only considered for publication, if the findings provide novel insight into the organization and mechanisms of normal brain structure and function.
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