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昼夜节律性啮齿动物的感觉大脑中的权衡。

Trade-Offs in the Sensory Brain between Diurnal and Nocturnal Rodents.

机构信息

Department of Integrative Biology, Michigan State University, East Lansing, Michigan, USA.

Program in Ecology, Evolution, and Behavior, Michigan State University, East Lansing, Michigan, USA.

出版信息

Brain Behav Evol. 2024;99(3):123-143. doi: 10.1159/000538090. Epub 2024 Apr 3.

Abstract

INTRODUCTION

Transitions in temporal niche have occurred many times over the course of mammalian evolution. These are associated with changes in sensory stimuli available to animals, particularly with visual cues, because levels of light are so much higher during the day than at night. This relationship between temporal niche and available sensory stimuli elicits the expectation that evolutionary transitions between diurnal and nocturnal lifestyles will be accompanied by modifications of sensory systems that optimize the ability of animals to receive, process, and react to important stimuli in the environment.

METHODS

This study examines the influence of temporal niche on investment in sensory brain tissue of 13 rodent species (five diurnal; eight nocturnal). Animals were euthanized and the brains immediately frozen on dry ice; olfactory bulbs were subsequently dissected and weighed, and the remaining brain was weighed, sectioned, and stained. Stereo Investigator was used to calculate volumes of four sensory regions that function in processing visual (lateral geniculate nucleus, superior colliculus) and auditory (medial geniculate nucleus, inferior colliculus) information. A phylogenetic framework was used to assess the influence of temporal niche on the relative sizes of these brain structures and of olfactory bulb weights.

RESULTS

Compared to nocturnal species, diurnal species had larger visual regions, whereas nocturnal species had larger olfactory bulbs than their diurnal counterparts. Of the two auditory structures examined, one (medial geniculate nucleus) was larger in diurnal species, while the other (inferior colliculus) did not differ significantly with temporal niche.

CONCLUSION

Our results indicate a possible indirect association between temporal niche and auditory investment and suggest probable trade-offs of investment between olfactory and visual areas of the brain, with diurnal species investing more in processing visual information and nocturnal species investing more in processing olfactory information.

摘要

简介

在哺乳动物进化过程中,时间生态位发生了多次转变。这些转变与动物可获得的感官刺激有关,特别是与视觉线索有关,因为白天的光线水平比晚上高得多。时间生态位和可利用的感官刺激之间的这种关系引发了这样的期望,即昼夜生活方式之间的进化转变将伴随着感官系统的改变,这些改变优化了动物接收、处理和对环境中重要刺激做出反应的能力。

方法

本研究检查了时间生态位对 13 种啮齿动物物种(5 种昼行性;8 种夜行性)的感官脑组织投资的影响。动物被安乐死,大脑立即用干冰冷冻;随后解剖嗅球并称重,其余大脑称重、切片和染色。立体调查员用于计算四个感官区域的体积,这些区域在处理视觉(外侧膝状体核、上丘)和听觉(内侧膝状体核、下丘)信息方面发挥作用。使用系统发育框架评估时间生态位对这些大脑结构的相对大小和嗅球重量的影响。

结果

与夜行性物种相比,昼行性物种的视觉区域较大,而夜行性物种的嗅球比其昼行性对应物种大。在所检查的两个听觉结构中,一个(内侧膝状体核)在昼行性物种中较大,而另一个(下丘)与时间生态位没有显著差异。

结论

我们的研究结果表明,时间生态位与听觉投资之间可能存在间接关联,并表明嗅觉和视觉大脑区域之间的投资可能存在权衡,昼行性物种更多地投资于处理视觉信息,而夜行性物种更多地投资于处理嗅觉信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c59b/11346379/a81de289f4ec/bbe-2024-0099-0003-538090_F01.jpg

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