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人工马赛克脑进化相对端脑大小提高了孔雀鱼(Poecilia reticulata)的抑制控制能力。

Artificial mosaic brain evolution of relative telencephalon size improves inhibitory control abilities in the guppy (Poecilia reticulata).

机构信息

Department of Zoology, Stockholm University, Stockholm, Sweden.

出版信息

Evolution. 2022 Jan;76(1):128-138. doi: 10.1111/evo.14405. Epub 2021 Nov 30.

Abstract

Mosaic brain evolution, the change in the size of separate brain regions in response to selection on cognitive performance, is an important idea in the field of cognitive evolution. However, untill now, most of the data on how separate brain regions respond to selection and their cognitive consequences stem from comparative studies. To experimentally investigate the influence of mosaic brain evolution on cognitive ability, we used male guppies artificially selected for large and small telencephalons relative to the rest of the brain. Here, we tested an important aspect of executive cognitive ability using a detour task. We found that males with larger telencephalons outperformed males with smaller telencephalons. Fish with larger telencephalons showed faster improvement in performance during detour training and were more successful in reaching the food reward without touching the transparent barrier (i.e., through correct detouring) during the test phase. Together, our findings provide the first experimental evidence showing that evolutionary enlargement of relative telencephalon size confers cognitive benefits, supporting an important role for mosaic brain evolution during cognitive evolution.

摘要

镶嵌式大脑进化,即大脑不同区域的大小因认知表现的选择而发生变化,是认知进化领域的一个重要概念。然而,到目前为止,关于大脑不同区域如何对选择做出反应以及它们的认知后果的大部分数据都来自于比较研究。为了实验研究镶嵌式大脑进化对认知能力的影响,我们使用雄性孔雀鱼进行了人工选择,使大脑的端脑相对于其他部分更大或更小。在这里,我们使用绕道任务测试了执行认知能力的一个重要方面。我们发现,端脑较大的雄性比端脑较小的雄性表现更好。端脑较大的鱼在绕道训练过程中表现出更快的进步,并且在测试阶段,它们在不接触透明障碍物的情况下(即通过正确的绕道)成功到达食物奖励的次数更多。总之,我们的研究结果提供了第一个实验证据,表明相对端脑大小的进化增大赋予了认知益处,支持了镶嵌式大脑进化在认知进化过程中的重要作用。

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