雷鳍鱼类大脑的多样性。

IF 2.1 4区 心理学 Q3 BEHAVIORAL SCIENCES Brain Behavior and Evolution Pub Date : 2023-01-01 Epub Date: 2023-03-22 DOI:10.1159/000530243
Isabelle C Gebhardt, Michael H Hofmann
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引用次数: 0

摘要

大脑的可塑性很强,无论是对表型多样性的反应还是对更大的进化趋势的反应。分类群之间的差异不能轻易归因于这两个因素。关于更高分类水平的比较形态学数据很少,尤其是在鳐鱼中。在这里,我们通过使用块脸成像的体积测量显示了150多种鳐鱼大脑区域的巨大多样性。我们发现,家庭或订单之间的差异更可能是由于环境需求,而不是系统地位。由于栖息地特性的根本差异,盐和淡水物种之间处理感觉输入(化学感觉和侧线与视觉系统)的大脑区域出现了最显著的变化。此外,一些脑容量测定模式与身体形态特征有关。小脑大小与身体深度以及鱼鳔的存在呈正相关。由于身体形态与生态型和栖息地选择有关,大脑和身体形态以及生态因素的复杂特征空间可以更好地解释物种向其生态位的分化,并有助于更好地了解动物如何适应环境。
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The Diversity of the Brains of Ray-Finned Fishes.

Brains are very plastic, both in response to phenotypic diversity and to larger evolutionary trends. Differences between taxa cannot be easily attributed to either factors. Comparative morphological data on higher taxonomic levels are scarce, especially in ray-finned fishes. Here we show the great diversity of brain areas of more than 150 species of ray-finned fishes by volumetric measurements using block-face imaging. We found that differences among families or orders are more likely due to environmental needs than to systematic position. Most notable changes are present in the brain areas processing sensory input (chemosenses and lateral line vs. visual system) between salt- and freshwater species due to fundamental differences in habitat properties. Further, some patterns of brain volumetry are linked to characteristics of body morphology. There is a positive correlation between cerebellum size and body depth, as well as the presence of a swim bladder. Since body morphology is linked to ecotypes and habitat selection, a complex character space of brain and body morphology and ecological factors together could explain better the differentiation of species into their ecological niches and may lead to a better understanding of how animals adapt to their environment.

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来源期刊
Brain Behavior and Evolution
Brain Behavior and Evolution 医学-行为科学
CiteScore
3.10
自引率
23.50%
发文量
31
审稿时长
>12 weeks
期刊介绍: ''Brain, Behavior and Evolution'' is a journal with a loyal following, high standards, and a unique profile as the main outlet for the continuing scientific discourse on nervous system evolution. The journal publishes comparative neurobiological studies that focus on nervous system structure, function, or development in vertebrates as well as invertebrates. Approaches range from the molecular over the anatomical and physiological to the behavioral. Despite this diversity, most papers published in ''Brain, Behavior and Evolution'' include an evolutionary angle, at least in the discussion, and focus on neural mechanisms or phenomena. Some purely behavioral research may be within the journal’s scope, but the suitability of such manuscripts will be assessed on a case-by-case basis. The journal also publishes review articles that provide critical overviews of current topics in evolutionary neurobiology.
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