Offner Thomas, Weiss Lukas, Daume Daniela, Berk Anna, Inderthal Tim Justin, Manzini Ivan, Hassenklöver Thomas
Institute of Animal Physiology, Department of Animal Physiology and Molecular Biomedicine, Justus-Liebig-University Giessen, 35392 Giessen, Germany.
iScience. 2023 Aug 2;26(9):107518. doi: 10.1016/j.isci.2023.107518. eCollection 2023 Sep 15.
Glomeruli are the functional units of the vertebrate olfactory bulb (OB) connecting olfactory receptor neuron (ORN) axons and mitral/tufted cell (MTC) dendrites. In amphibians, these two circuit elements regularly branch and innervate multiple, spatially distinct glomeruli. Using functional multiphoton-microscopy and single-cell tracing, we investigate the impact of this wiring on glomerular module organization and odor representations on multiple levels of the OB network. The glomerular odor map to amino acid odorants is neither stereotypic between animals nor chemotopically organized. Among the morphologically heterogeneous group of uni- and multi-glomerular MTCs, MTCs can selectively innervate glomeruli formed by axonal branches of individual ORNs. We conclude that odor map heterogeneity is caused by the coexistence of different intermingled glomerular modules. This demonstrates that organization of the amphibian main olfactory system is not strictly based on uni-glomerular connectivity.
肾小球是脊椎动物嗅球(OB)的功能单位,连接嗅觉受体神经元(ORN)轴突和二尖瓣/簇状细胞(MTC)树突。在两栖动物中,这两个电路元件经常分支并支配多个空间上不同的肾小球。使用功能性多光子显微镜和单细胞追踪,我们在OB网络的多个层面上研究了这种布线对肾小球模块组织和气味表征的影响。动物之间对氨基酸气味剂的肾小球气味图谱既不是刻板的,也不是化学拓扑组织的。在形态学上异质的单肾小球和多肾小球MTC组中,MTC可以选择性地支配由单个ORN的轴突分支形成的肾小球。我们得出结论,气味图谱异质性是由不同混合的肾小球模块共存引起的。这表明两栖动物主嗅觉系统的组织并不严格基于单肾小球连接。