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趋同镶嵌式脑进化与硬骨鱼类新型电感觉系统的进化有关。

Convergent mosaic brain evolution is associated with the evolution of novel electrosensory systems in teleost fishes.

机构信息

Department of Biology, Washington University, St Louis, United States.

出版信息

Elife. 2022 Jun 17;11:e74159. doi: 10.7554/eLife.74159.

Abstract

Brain region size generally scales allometrically with brain size, but mosaic shifts in brain region size independent of brain size have been found in several lineages and may be related to the evolution of behavioral novelty. African weakly electric fishes (Mormyroidea) evolved a mosaically enlarged cerebellum and hindbrain, yet the relationship to their behaviorally novel electrosensory system remains unclear. We addressed this by studying South American weakly electric fishes (Gymnotiformes) and weakly electric catfishes ( spp.), which evolved varying aspects of electrosensory systems, independent of mormyroids. If the mormyroid mosaic increases are related to evolving an electrosensory system, we should find similar mosaic shifts in gymnotiforms and . Using micro-computed tomography scans, we quantified brain region scaling for multiple electrogenic, electroreceptive, and non-electrosensing species. We found mosaic increases in cerebellum in all three electrogenic lineages relative to non-electric lineages and mosaic increases in torus semicircularis and hindbrain associated with the evolution of electrogenesis and electroreceptor type. These results show that evolving novel electrosensory systems is repeatedly and independently associated with changes in the sizes of individual major brain regions independent of brain size, suggesting that selection can impact structural brain composition to favor specific regions involved in novel behaviors.

摘要

脑区大小通常与脑容量呈比例缩放,但在几个谱系中发现了脑区大小与脑容量无关的镶嵌性变化,这可能与行为新颖性的进化有关。非洲弱电鱼( Mormyroidea )进化出了镶嵌性增大的小脑和后脑,但与它们行为新颖的电感觉系统的关系尚不清楚。我们通过研究南美弱电鱼( Gymnotiformes )和弱电鲶鱼( spp. )来解决这个问题,它们独立于 Mormyroidea 进化出了电感觉系统的不同方面。如果 Mormyroidea 的镶嵌性增加与进化出电感觉系统有关,我们应该在 Gymnotiformes 和 中发现类似的镶嵌性变化。我们使用微计算机断层扫描技术对多种发电、电感受和非电感觉物种的脑区进行了量化。我们发现,与非电鱼类相比,所有三种发电鱼类的小脑都有镶嵌性增加,与电发生和电感受器类型的进化相关的半规管和后脑也有镶嵌性增加。这些结果表明,进化出新颖的电感觉系统与脑区大小的个体变化有关,而这些变化与脑容量无关,这表明选择可以影响结构脑组成,以有利于参与新行为的特定区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9df7/9333993/59983258808c/elife-74159-fig1.jpg

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