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首页> 外文期刊>The Journal of Comparative Neurology >Organization of subcortical auditory nuclei of Japanese house bat ( Pipistrellus abramus Pipistrellus abramus ) identified with cytoarchitecture and molecular expression
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Organization of subcortical auditory nuclei of Japanese house bat ( Pipistrellus abramus Pipistrellus abramus ) identified with cytoarchitecture and molecular expression

机译:日本房屋蝙蝠(PipistrellusBaramus pipistrellus Abramus)的组织组织用细胞建筑和分子表达

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摘要

Abstract The auditory system of echolocating bats shows remarkable specialization likely related to analyzing echoes of sonar pulses. However, significant interspecies differences have been observed in the organization of auditory pathways among echolocating bats, and the homology of auditory nuclei with those of non‐echolocating species has not been established. Here, in order to establish the homology and specialization of auditory pathways in echolocating bats, the expression of markers for glutamatergic, GABAergic, and glycinergic phenotypes in the subcortical auditory nuclei of Japanese house bat ( Pipistrellus abramus ) was evaluated. In the superior olivary complex, we identified the medial superior olive and superior paraolivary nuclei as expressing glutamatergic and GABAergic phenotypes, respectively, suggesting these nuclei are homologous with those of rodents. In the nuclei of the lateral lemniscus (NLL), the dorsal nucleus was found to be purely GABAergic, the intermediate nucleus was a mixture of glutamatergic and inhibitory neurons, the compact part of the ventral nucleus was purely glycinergic, and the multipolar part of the ventral nucleus expressed both GABA and glycine. In the inferior colliculus (IC), the central nucleus was found to be further subdivided into dorsal and ventral parts according to differences in the density of terminals and the morphology of large GABAergic neurons, suggesting specialization to sonar pulse structure. Medial geniculate virtually lacked GABAergic neurons, suggesting that the organization of the tectothalamic pathway is similar with that of rodents. Taken together, our findings revealed that specialization primarily occurs with regard to nuclei size and organization of the NLL and IC.
机译:摘要呼应蝙蝠的听觉系统显示出卓越的专业化可能与分析声纳脉冲的回声有关。然而,在呼应蝙蝠中的听觉途径组织中已经观察到显着的差异,并且尚未建立与非呼声偶联物种的听觉核的同源性。在这里,为了建立回声抗蝙蝠的听觉途径的同源性和专业化,评估了日本房屋蝙蝠(PipistrellusBaramus)的皮下听觉核(Pipistrellus Abramus)的谷胱甘肽,甘蓝和甘油能表型的表达。在优质的橄榄醇综合体中,我们鉴定了中介优质橄榄和优质的辅助核,分别表达谷氨酸和Gabaergic表型,表明这些核与啮齿动物的菌株同源。在横向列扣(NLL)的核中,发现背核纯粹是甘蓝核,中间核是谷氨酸糖尿基和抑制性神经元的混合物,腹侧细胞核的紧凑部分纯血糖能,以及多极部分腹侧核表达GABA和甘氨酸。在下粒子(IC)中,发现中央核根据终端密度的差异和大型胃肠杆菌神经元的形态,表明声纳脉冲结构的差异进一步细分为背部和腹侧部分。内侧胰腺几乎缺乏加巴松神经元,表明构造途径的组织与啮齿动物的组织类似。我们的调查结果集中在一起透露,专业化主要发生在NLL和IC的核尺寸和组织方面。

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