Department of Physiology, Ribeirão Preto School of Medicine, University of São Paulo, Ribeirão Preto, SP, Brazil.
J Comp Neurol. 2011 Jun 15;519(9):1658-76. doi: 10.1002/cne.22593.
The present study provides a detailed description of morphological and hodological aspects of the glomerular nucleus in the weakly electric fish Gymnotus sp., and explores the evolutionary and functional implications flowing from this analysis. The glomerular nucleus of Gymnotus shows numerous morphological similarities with the glomerular nucleus of percomorph fish, although cytoarchitectonically simpler. In addition, congruence of the histochemical acetylcholinesterase (AChE) distribution with cytoarchitectonic data suggests that the glomerular nucleus, together with the ventromedial cell group of the medial subdivision of the preglomerular complex (PGm-vmc) rostrally, and the subglomerular nucleus (as identified by Maler et al. [1991] J Chem Neuroanat 4:1–38) caudally, may form a distinct longitudinally organized glomerular complex. Our results show that an important source of sensory afferents to the glomerular nucleus originates in the pretectal and electrosensorius nuclei. The glomerular nucleus in turn projects to the hypothalamus (inferior lobe and anterior hypothalamus), to the anterior tuberal nucleus, and to the medial region of the preglomerular nucleus (PGm). These data suggest that visual and electrosensory information reach the glomerular nucleus and are relayed to the hypothalamus and, via PGm, to the pallium. Such connections are similar to those of the glomerular nucleus in percomorphs and the posterior pretectal nucleus in osteoglossomorph, esocids, and salmonids, where they comprise one component of a visual processing pathway. In Gymnotiform fish, however, the pretectal region that projects to the glomerular nucleus is dominated by electrosensory input (visual input is minor), which is consistent with the dominant role of electroreception in these fish.
本研究详细描述了弱电鱼 Gymnotus 肾小球核的形态和流路学方面,并探讨了由此分析得出的进化和功能意义。Gymnotus 的肾小球核与鲈形目鱼类的肾小球核具有许多形态相似之处,尽管细胞构筑更为简单。此外,乙酰胆碱酯酶(AChE)组织化学分布与细胞构筑数据的一致性表明,肾小球核与前脑桥正中旁复合体腹内侧细胞群(PGm-vmc)的近端以及亚肾小球核(Maler 等人 [1991] J Chem Neuroanat 4:1–38 所识别)的尾端一起,可能形成一个明显的纵向组织化的肾小球复合体。我们的结果表明,感觉传入纤维的一个重要来源是前脑和电感觉核。肾小球核反过来投射到下丘脑(下叶和前下丘脑)、前结节核和前脑桥正中旁核(PGm)的内侧区域。这些数据表明,视觉和电感觉信息到达肾小球核,并被中继到下丘脑,并通过 PGm 中继到脑皮层。这些连接类似于鲈形目鱼类的肾小球核和硬骨鱼类、鳗鲡目鱼类和鲑鱼目中的后前脑桥核,它们构成了视觉处理途径的一个组成部分。然而,在电鳗形鱼类中,投射到肾小球核的前脑区域主要由电感觉输入支配(视觉输入较小),这与这些鱼类中电感觉的主导作用一致。