Distribution of Neurotransmitter Receptors and Zinc in the Pigeon (Columba livia) Hippocampal Formation: A Basis for Further Comparison With the Mammalian Hippocampus

被引:56
作者
Herold, Christina [1 ]
Bingman, Verner P. [2 ,3 ]
Stroeckens, Felix [4 ]
Letzner, Sara [4 ]
Sauvage, Magdalena [5 ]
Palomero-Gallagher, Nicola [6 ]
Zilles, Karl [6 ,7 ,8 ]
Guentuerkuen, Onur [4 ]
机构
[1] Univ Dusseldorf, C & O Vogt Inst Brain Res, D-40225 Dusseldorf, Germany
[2] Bowling Green State Univ, Dept Psychol, Bowling Green, OH 43403 USA
[3] Bowling Green State Univ, JP Scott Ctr Neurosci, Bowling Green, OH 43403 USA
[4] Ruhr Univ Bochum, Fac Psychol, Inst Cognit Neurosci, Dept Biopsychol, D-44780 Bochum, Germany
[5] Ruhr Univ Bochum, Fac Med, Mercator Res Grp Struct Memory, Res Dept Neurosci, D-44780 Bochum, Germany
[6] Res Ctr Julich, Inst Neurosci & Med INM 1, D-52425 Julich, Germany
[7] Rhein Westfal TH Aachen, Dept Psychiat Psychotherapy & Psychosomat, D-52074 Aachen, Germany
[8] JARA Translat Brain Med, D-52074 Aachen, Germany
关键词
hippocampus; entorhinal cortex; receptor; avian; autoradiography; zinc; SULFIDE SILVER METHOD; ZEBRA FINCH; EFFERENT CONNECTIONS; AVIAN HIPPOCAMPUS; SPATIAL MEMORY; BINDING-SITES; DORSOMEDIAL TELENCEPHALON; CAUDOLATERAL NEOSTRIATUM; CHOLINERGIC RECEPTORS; DOPAMINE-RECEPTORS;
D O I
10.1002/cne.23549
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The avian hippocampal formation (HF) and mammalian hippocampus share a similar functional role in spatial cognition, but the underlying neuronal mechanisms allowing the functional similarity are incompletely understood. To understand better the organization of the avian HF and its transmitter receptors, we analyzed binding site densities for glutamatergic AMPA, NMDA, and kainate receptors; GABA(A) receptors; muscarinic M-1, M-2 and nicotinic (nACh) acetylcholine receptors; noradrenergic alpha(1) and alpha(2) receptors; serotonergic 5-HT1A receptors; dopaminergic D-1/5 receptors by using quantitative in vitro receptor autoradiography. Additionally, we performed a modified Timm staining procedure to label zinc. The regionally different receptor densities mapped well onto seven HF subdivisions previously described. Several differences in receptor expression highlighted distinct HF subdivisions. Notable examples include 1) high GABAA and alpha(1) receptor expression, which rendered distinctive ventral subdivisions; 2) high alpha(2) receptor expression, which rendered distinctive a dorsomedial subdivision; 3) distinct kainate, alpha(2), and muscarinic receptor densities that rendered distinctive the two dorsolateral subdivisions; and 4) a dorsomedial region characterized by high kainate receptor density. We further observed similarities in receptor binding densities between subdivisions of the avian and mammalian HF. Despite the similarities, we propose that 300 hundred million years of independent evolution has led to a mosaic of similarities and differences in the organization of the avian HF and mammalian hippocampus and that thinking about the avian HF in terms of the strict organization of the mammalian hippocampus is likely insufficient to understand the HF of birds. (C) 2014 Wiley Periodicals, Inc.
引用
收藏
页码:2553 / 2575
页数:23
相关论文
共 119 条
[81]   Increasing stereotypy in adult zebra finch song correlates with a declining rate of adult neurogenesis [J].
Pytte, Carolyn L. ;
Gerson, Miles ;
Miller, Janet ;
Kirn, John R. .
DEVELOPMENTAL NEUROBIOLOGY, 2007, 67 (13) :1699-1720
[82]   Visualization of transmitter release with zinc fluorescence detection at the mouse hippocampal mossy fibre synapse [J].
Qian, J ;
Noebels, JL .
JOURNAL OF PHYSIOLOGY-LONDON, 2005, 566 (03) :747-758
[83]   A bird-brain view of episodic memory [J].
Rattenborg, N. C. ;
Martinez-Gonzalez, D. .
BEHAVIOURAL BRAIN RESEARCH, 2011, 222 (01) :236-245
[84]   Revised nomenclature for avian telencephalon and some related brainstem nuclei [J].
Reiner, A ;
Perkel, DJ ;
Bruce, LL ;
Butler, AB ;
Csillag, A ;
Kuenzel, W ;
Medina, L ;
Paxinos, G ;
Shimizu, T ;
Striedter, G ;
Wild, M ;
Ball, GF ;
Durand, S ;
Güntürkün, O ;
Lee, DW ;
Mello, CV ;
Powers, A ;
White, SA ;
Hough, G ;
Kubikova, L ;
Smulders, TV ;
Wada, K ;
Dugas-Ford, J ;
Husband, S ;
Yamamoto, K ;
Yu, J ;
Siang, C ;
Jarvis, ED .
JOURNAL OF COMPARATIVE NEUROLOGY, 2004, 473 (03) :377-414
[85]   Response to kainic acid injections:: Changes in staining for zinc, Fos, cell death and glial response in the rat forebrain [J].
Riba-Bosch, A ;
Pérez-Clausell, J .
NEUROSCIENCE, 2004, 125 (03) :803-818
[86]   Spatial memory and hippocampal pallium through vertebrate evolution:: Insights from reptiles and teleost fish [J].
Rodríguez, F ;
López, JC ;
Vargas, JP ;
Broglio, C ;
Gómez, Y ;
Salas, C .
BRAIN RESEARCH BULLETIN, 2002, 57 (3-4) :499-503
[87]  
Rose M., 1926, Journal fuer Psychologie Leipzig, V34, P1
[88]  
Rose M, 1912, J PSYCHOL NEUROL, V19, P391
[89]   IMMUNOHISTOCHEMICAL DISTRIBUTION OF AMPA-TYPE LABEL IN THE PIGEON (C. LIVIA) HIPPOCAMPUS [J].
Rosinha, M. U. ;
Ferrari, E. A. M. ;
Toledo, C. A. B. .
NEUROSCIENCE, 2009, 159 (02) :438-450
[90]   Spatial Orientation in Japanese Quails (Coturnix coturnix japonica) [J].
Ruploh, Tim ;
Kazek, Agnieszka ;
Bischof, Hans-Joachim .
PLOS ONE, 2011, 6 (12)