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与非储食鸟类相比,储食鸟类海马体神经元募集更多。

Greater hippocampal neuronal recruitment in food-storing than in non-food-storing birds.

作者信息

Hoshooley Jennifer S, Sherry David F

机构信息

Program in Neuroscience, Department of Psychology, University of Western Ontario, London, Ontario, Canada, N6A 5C2.

出版信息

Dev Neurobiol. 2007 Mar;67(4):406-14. doi: 10.1002/dneu.20316.

Abstract

Previous research has shown heightened recruitment of new neurons to the chickadee hippocampus in the fall. The present study was conducted to determine whether heightened fall recruitment is associated with the seasonal onset of food-storing by comparing neurogenesis in chickadees and a non-food-storing species, the house sparrow. Chickadees and house sparrows were captured in the wild in fall and spring and received multiple injections of the cell birth marker bromodeoxyuridine (BrdU). Birds were held in captivity and the level of hippocampal neuron recruitment was assessed after 6 weeks. Chickadees showed significantly more hippocampal neuronal recruitment than house sparrows. We found no seasonal differences in hippocampal neuronal recruitment in either species. In chickadees and in house sparrows, one-third of new cells labeled for BrdU also expressed the mature neuronal protein, NeuN. In a region adjacent to the hippocampus, the hyperpallium apicale, we observed no significant differences in neuronal recruitment between species or between seasons. Hippocampal volume and total neuron number both were greater in spring than in fall in chickadees, but no seasonal differences were observed in house sparrows. Enhanced neuronal recruitment in the hippocampus of food-storing chickadees suggests a degree of neurogenic specialization that may be associated with the spatial memory requirements of food-storing behavior.

摘要

先前的研究表明,在秋季,山雀海马体中新神经元的招募有所增加。本研究旨在通过比较山雀和非储食性物种家麻雀的神经发生情况,来确定秋季招募增加是否与储食行为的季节性开始有关。在秋季和春季从野外捕获山雀和家麻雀,并对它们多次注射细胞生成标记物溴脱氧尿苷(BrdU)。将这些鸟圈养起来,并在6周后评估海马体神经元的招募水平。山雀的海马体神经元招募明显多于家麻雀。我们发现这两个物种的海马体神经元招募均无季节性差异。在山雀和家麻雀中,标记为BrdU的新细胞中有三分之一也表达成熟的神经元蛋白NeuN。在与海马体相邻的一个区域,即顶叶皮质,我们观察到物种之间或季节之间在神经元招募方面没有显著差异。山雀的海马体体积和总神经元数量在春季均大于秋季,但家麻雀未观察到季节性差异。储食性山雀海马体中增强的神经元招募表明存在一定程度的神经发生特化,这可能与储食行为的空间记忆需求有关。

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