端脑的相对大小不会影响虹鳟(Poecilia reticulata)的集体运动。

IF 2.5 3区 环境科学与生态学 Q2 BEHAVIORAL SCIENCES
Behavioral Ecology Pub Date : 2024-05-03 eCollection Date: 2024-07-01 DOI:10.1093/beheco/arae033
Annika Boussard, Mikaela Ahlkvist, Alberto Corral-López, Stephanie Fong, John Fitzpatrick, Niclas Kolm
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引用次数: 0

摘要

从成群的昆虫到成群的鱼类,集体运动在所有动物类群中都很常见。集体运动需要个体间错综复杂的行为整合,但人们对大脑形态的进化变化如何影响个体在群体中协调行为的能力知之甚少。在这项研究中,我们利用针对相对端脑大小(大脑形态的一个方面通常与高级认知功能相关)进行选择性繁殖的河豚鼠,使用开放场试验来研究其在集体运动中的作用。我们分析了由 8 个个体组成的同性鱼群的高分辨率跟踪数据,以评估集体运动的不同方面,如排列、对附近鱼群成员的吸引力和游泳速度。我们的研究结果表明,河豚群中集体运动的变化可能不会受到端脑相对大小变化的强烈影响。我们的研究表明,集体运动动物的群体动力学很可能不是由高级认知功能驱动的,而是由邻近个体之间相对简单的规则所产生的基本认知过程驱动的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relative telencephalon size does not affect collective motion in the guppy (Poecilia reticulata).

Collective motion is common across all animal taxa, from swarming insects to schools of fish. The collective motion requires intricate behavioral integration among individuals, yet little is known about how evolutionary changes in brain morphology influence the ability for individuals to coordinate behavior in groups. In this study, we utilized guppies that were selectively bred for relative telencephalon size, an aspect of brain morphology that is normally associated with advanced cognitive functions, to examine its role in collective motion using an open-field assay. We analyzed high-resolution tracking data of same-sex shoals consisting of 8 individuals to assess different aspects of collective motion, such as alignment, attraction to nearby shoal members, and swimming speed. Our findings indicate that variation in collective motion in guppy shoals might not be strongly affected by variation in relative telencephalon size. Our study suggests that group dynamics in collectively moving animals are likely not driven by advanced cognitive functions but rather by fundamental cognitive processes stemming from relatively simple rules among neighboring individuals.

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来源期刊
Behavioral Ecology
Behavioral Ecology 环境科学-动物学
CiteScore
5.20
自引率
8.30%
发文量
93
审稿时长
3.0 months
期刊介绍: Studies on the whole range of behaving organisms, including plants, invertebrates, vertebrates, and humans, are included. Behavioral Ecology construes the field in its broadest sense to include 1) the use of ecological and evolutionary processes to explain the occurrence and adaptive significance of behavior patterns; 2) the use of behavioral processes to predict ecological patterns, and 3) empirical, comparative analyses relating behavior to the environment in which it occurs.
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