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脑皮层分区的脊椎动物形态型真的存在吗?

Does a Vertebrate Morphotype of Pallial Subdivisions Really Exist?

作者信息

Yamamoto Kei, Estienne Pierre, Bloch Solal

机构信息

Paris-Saclay Institute of Neuroscience (Neuro-PSI), Université Paris-Saclay, CNRS UMR 9197, Saclay, France.

Université de Tours, INSERM, Imaging Brain & Neuropsychiatry iBraiN U1253, 37032, Tours, France.

出版信息

Brain Behav Evol. 2024;99(4):230-247. doi: 10.1159/000537746. Epub 2024 Jul 16.

Abstract

BACKGROUND

Comparative neuroanatomists have long sought to determine which part of the pallium in nonmammals is homologous to the mammalian neocortex. A number of similar connectivity patterns across species have led to the idea that the basic organization of the vertebrate brain is relatively conserved; thus, efforts of the last decades have been focused on determining a vertebrate "morphotype" - a model comprising the characteristics believed to have been present in the last common ancestor of all vertebrates.

SUMMARY

The endeavor to determine the vertebrate morphotype has been riddled with controversies due to the extensive morphological diversity of the pallium among vertebrate taxa. Nonetheless, most proposed scenarios of pallial homology are variants of a common theme where the vertebrate pallium is subdivided into subdivisions homologous to the hippocampus, neocortex, piriform cortex, and amygdala, in a one-to-one manner. We review the rationales of major propositions of pallial homology and identify the source of the discrepancies behind different hypotheses. We consider that a source of discrepancies is the prevailing assumption that there is a single "morphotype of the pallial subdivisions" throughout vertebrates. Instead, pallial subdivisions present in different taxa probably evolved independently in each lineage.

KEY MESSAGES

We encounter discrepancies when we search for a single morphotype of subdivisions across vertebrates. These discrepancies can be resolved by considering that several subdivisions within the pallium were established after the divergence of the different lineages. The differences of pallial organization are especially remarkable between actinopterygians (including teleost fishes) and other vertebrates. Thus, the prevailing notion of a simple one-to-one homology between the mammalian and teleost pallia needs to be reconsidered.

摘要

背景

比较神经解剖学家长期以来一直试图确定非哺乳动物大脑皮质的哪一部分与哺乳动物的新皮质同源。物种间许多相似的连接模式促使人们认为脊椎动物大脑的基本组织结构相对保守;因此,过去几十年的研究重点一直是确定一种脊椎动物“形态型”——一个包含所有脊椎动物最后共同祖先中被认为存在的特征的模型。

总结

由于脊椎动物类群中大脑皮质的形态多样性广泛,确定脊椎动物形态型的努力一直充满争议。尽管如此,大多数关于大脑皮质同源性的设想都是一个共同主题的变体,即脊椎动物大脑皮质以一对一的方式细分为与海马体、新皮质、梨状皮质和杏仁核同源的亚区。我们回顾了大脑皮质同源性主要观点的基本原理,并确定了不同假设背后差异的来源。我们认为差异的一个来源是普遍存在的假设,即整个脊椎动物中存在单一的“大脑皮质亚区形态型”。相反,不同类群中存在的大脑皮质亚区可能在每个谱系中独立进化。

关键信息

当我们在脊椎动物中寻找单一的亚区形态型时,会遇到差异。考虑到大脑皮质内的几个亚区是在不同谱系分化后形成的,这些差异可以得到解决。硬骨鱼(包括硬骨鱼类)和其他脊椎动物之间大脑皮质组织的差异尤为显著。因此,需要重新考虑哺乳动物和硬骨鱼大脑皮质之间简单的一对一同源性这一普遍观念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d7e/11614313/e1cd691e02a8/bbe-2024-0099-0004-537746_F01.jpg

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