Rodríguez-Moldes Isabel, Sueiro Catalina, Carrera Iván, Quintana-Urzainqui Idoia, Candal Eva
Neurodevo Group, Aquatic One Health Research Center (ARCUS), Department of Functional Biology (Cell Biology Section), Faculty of Biology, University of Santiago de Compostela, Santiago de Compostela, Spain.
Front Neuroanat. 2025 Aug 26;19:1620527. doi: 10.3389/fnana.2025.1620527. eCollection 2025.
Comparative studies on the forebrain across different model organisms are necessary to investigate the origin and degree of evolutionary conservation of this brain region and its derivatives. The catshark has become a reliable model representative of cartilaginous fishes (Chondrichthyans), the oldest divergent lineage of extant gnathostomes (jawed vertebrates). Previous studies on the chemoarchitecture, connectivity, and development of the subpallium of revealed the existence of subdivisions with an embryological origin and genetic specification similar to those of tetrapods, supporting homology with their basal ganglia and certain amygdaloid components. To better understand the evolutionary origin of these subpallial components, we present here a summary of the main neuroanatomical, chemoarchitectural, and developmental features of the of , a nuclear aggrupation of the basal forebrain of all Chondrichthyans that has been related to the basal ganglia and the amygdala. Particular emphasis has been placed on characterizing the tyrosine hydroxylase-positive components of the subpallium to discern their involvement in the structural organization of putative basal ganglia homologs in the catshark. We propose a new interpretation that considers the as the central part of a subpallial complex formed also by its neighboring territories, where the basic components of the basal ganglia and the amygdala of gnathostomes would be integrated.
对不同模式生物的前脑进行比较研究,对于探究该脑区及其衍生物的进化起源和保守程度至关重要。猫鲨已成为软骨鱼类(板鳃亚纲)可靠的模式代表,软骨鱼类是现存有颌脊椎动物中最古老的分支谱系。先前关于[具体物种]大脑皮质下结构的化学结构、连接性和发育的研究表明,其存在与四足动物胚胎起源和基因特征相似的细分区域,这支持了它们与基底神经节和某些杏仁核成分的同源性。为了更好地理解这些大脑皮质下成分的进化起源,我们在此总结了[具体物种]的[具体脑区]的主要神经解剖学、化学结构和发育特征,[具体脑区]是所有软骨鱼类基底前脑的一个核团,与基底神经节和杏仁核有关。我们特别强调了对大脑皮质下酪氨酸羟化酶阳性成分的特征描述,以辨别它们在猫鲨假定基底神经节同源物结构组织中的作用。我们提出了一种新的解释,认为[具体脑区]是由其相邻区域共同构成的大脑皮质下复合体的中心部分,有颌脊椎动物基底神经节和杏仁核的基本成分将在此整合。