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美国短吻鳄(密西西比鳄)的小脑输入

Cerebellar Inputs in the American Alligator (Alligator mississippiensis).

作者信息

Gutiérrez-Ibáñez Cristián, Kettler Lutz, Pilon Madison C, Carr Catherine E, Wylie Douglas R

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada.

Lehrstuhl für Zoologie, Technical University of Munich, Freising, Germany.

出版信息

Brain Behav Evol. 2023;98(1):44-60. doi: 10.1159/000527348. Epub 2022 Dec 1.

Abstract

Crocodilians (alligators, crocodiles, and gharials) are the closet living relatives to birds and, as such, represent a key clade to understand the evolution of the avian brain. However, many aspects of crocodilian neurobiology remain unknown. In this paper, we address an important knowledge gap as there are no published studies of cerebellar connections in any crocodilian species. We used injections of retrograde tracers into the cerebellum of the American alligator (Alligator mississippiensis) to describe for the first time the origin of climbing and mossy fiber inputs. We found that inputs to the cerebellum in the American alligator are similar to those of other nonavian reptiles and birds. Retrograde labeled cells were found in the spinal cord, inferior olive, reticular formation, vestibular and cerebellar nuclei, as well as in nucleus ruber and surrounding tegmentum. Additionally, we found no retrogradely labeled cells in the anterior rhombencephalon which suggest that, like other nonavian reptiles, crocodilians may lack pontine nuclei. Similar to birds and other nonavian reptiles, we found inputs to the cerebellum from the pretectal nucleus lentiformis mesencephali. Additionally, we found retrogradely labeled neurons in two nuclei in the pretectum: the nucleus circularis and the interstitial nucleus of the posterior commissure. These pretectal projections have not been described in any other nonavian reptile to date, but they do resemble projections from the nucleus spiriformis medialis of birds. Our results show that many inputs to the cerebellum are highly conserved among sauropsids and that extensive pretectal inputs to the cerebellum are not exclusive to the avian brain. Finally, we suggest that the pontine nuclei of birds are an evolutionary novelty that may have evolved after the last common ancestor between birds and crocodilians, and may represent an intriguing case of convergent evolution with mammals.

摘要

鳄目动物(短吻鳄、鳄鱼和印度食鱼鳄)是现存与鸟类亲缘关系最近的动物,因此,它们是理解鸟类大脑进化的关键分支。然而,鳄目动物神经生物学的许多方面仍然未知。在本文中,我们填补了一个重要的知识空白,因为目前尚无关于任何鳄目动物小脑连接的已发表研究。我们将逆行示踪剂注射到美国短吻鳄(密西西比鳄)的小脑中,首次描述了攀爬纤维和苔藓纤维输入的起源。我们发现美国短吻鳄小脑的输入与其他非鸟类爬行动物和鸟类的相似。在脊髓、下橄榄核、网状结构、前庭核和小脑核以及红核和周围被盖中发现了逆行标记的细胞。此外,我们在前脑桥中未发现逆行标记的细胞,这表明与其他非鸟类爬行动物一样,鳄目动物可能缺乏脑桥核。与鸟类和其他非鸟类爬行动物相似,我们发现中脑豆状前核向小脑有输入。此外,我们在前庭顶盖的两个核中发现了逆行标记的神经元:环核和后连合间质核。迄今为止,在任何其他非鸟类爬行动物中都未描述过这些前庭顶盖投射,但它们确实类似于鸟类内侧螺旋状核的投射。我们的结果表明,蜥形纲动物中小脑的许多输入高度保守,并且小脑广泛的前庭顶盖输入并非鸟类大脑所独有。最后,我们认为鸟类的脑桥核是一种进化上的新奇事物,可能是在鸟类和鳄目动物的最后一个共同祖先之后进化而来的,并且可能代表了与哺乳动物趋同进化的一个有趣例子。

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Pretecto- and ponto-cerebellar pathways to the pigeon oculomotor cerebellum follow a zonal organization.
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Thalamic reticular nucleus in Alligator mississippiensis: Soma and dendritic morphology.
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