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红腹滨鹬在亚马逊河口红树林越冬期时海马回星形胶质细胞形态的变化。

Changes in hippocampal astrocyte morphology of Ruddy turnstone (Arenaria interpres) during the wintering period at the mangroves of Amazon River estuary.

机构信息

Universidade Federal do Pará, Instituto de Ciências Biológicas, Hospital Universitário João de Barros Barreto, Laboratório de Investigações em Neurodegeneração e Infecção, Rua dos Mundurucus, 4487, Guamá, CEP: 66.073-005, Belém, Pará, Brazil.

Instituto Federal de Educação, Ciência e Tecnologia do Pará, Laboratório de Biologia Molecular e Neuroecologia, Rua da Escola Agrícola S/N, Vila Sinhá, CEP: 68.600-000, Bragança, Pará, Brazil.

出版信息

J Chem Neuroanat. 2020 Oct;108:101805. doi: 10.1016/j.jchemneu.2020.101805. Epub 2020 Jun 4.

Abstract

Astrocytes are essential for lipid neuronal metabolism in long-distance uninterrupted migratory flights, when glucose is not available as the main source of energy. We previously demonstrated in Calidris pusilla that after uninterrupted 5 days transatlantic flight, astrocytes shrink and reduce its number in the hippocampal formation. Here we shifted our attention to the wintering period and tested the hypothesis that hippocampal astrocyte morphology of A interpres will change as the wintering period progresses towards the premigration window. To that end we used Arenaria interpres, which also crosses the Atlantic Ocean and reaches the mangroves of the Amazon River estuary for wintering. Birds were captured in September/October (closer to the arrival in the coast of Bragança, Para, Brazil for wintering) and in April/May (closer to the departure towards the breeding sites) and had their brains processed for selective GFAP-astrocyte immunolabeling. Three-dimensional reconstructions of the immunostained astrocytes were performed and morphological classification was done based on hierarchical cluster and discriminant analysis of multimodal morphometric features. We found two morphological phenotypes of astrocytes in the newcomers which differentially increased its morphological complexities as wintering period progresses towards the pre-migration window. Taken together, our findings demonstrate that the long-distance non-stop flight and wintering period differentially affected the two astrocytes morphotypes, suggesting distinct physiological roles for these cells. We suggest that morphological changes during the wintering period, may be part of the adaptive plasticity of the local hippocampal circuits of A. interpres in preparation for the long journey back to their breeding sites in the north hemisphere.

摘要

星形胶质细胞对于长距离不间断迁徙飞行中的神经元代谢至关重要,因为在这种情况下,葡萄糖无法作为主要能量来源。我们之前在黑腹滨鹬中证明,在不间断的 5 天跨大西洋飞行后,海马体中的星形胶质细胞会收缩并减少数量。在这里,我们将注意力转向冬季,并测试了以下假设:随着冬季向迁徙前窗口的推进,A interpres 的海马星形胶质细胞形态会发生变化。为此,我们使用了也会穿越大西洋并到达亚马逊河口红树林进行越冬的滨鹬属鸟类。鸟类于 9 月/10 月(更接近到达巴西帕拉州的布腊干萨海岸越冬)和 4 月/5 月(更接近向繁殖地迁徙)被捕,并对其大脑进行选择性 GFAP-星形胶质细胞免疫标记处理。对免疫染色的星形胶质细胞进行了三维重建,并基于多模态形态特征的层次聚类和判别分析进行了形态分类。我们发现新到者中存在两种星形胶质细胞形态表型,它们随着冬季向迁徙前窗口的推进,形态复杂性会不同程度地增加。总之,我们的研究结果表明,长距离不间断飞行和冬季对两种星形胶质细胞形态都有不同的影响,这表明这些细胞具有不同的生理功能。我们认为,冬季期间的形态变化可能是 A. interpres 局部海马回路适应长途返回北半球繁殖地的可塑性的一部分。

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