社会性珊瑚礁鱼群内部的空间分割

IF 2.7 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Anael Engel, Yaela Reuben, Irina Kolesnikov, Dmitri Churilov, Ran Nathan, Amatzia Genin
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引用次数: 0

摘要

形成社会群体的定点附着鱼类可能要在群体生活的优势与群体内争夺食物的劣势之间进行权衡。解决后者的一个可能办法是在群体成员之间划分空间。个体标记和水下追踪技术的限制阻碍了对群居鱼类的空间研究。在这里,我们利用水下摄像机和最新开发的深度学习工具,成功地追踪了红海埃拉特珊瑚礁中 4 组大豆娘(Dascyllus marginatus)个体标签鱼的三维运动。我们的研究结果基于持续 3-11 分钟、历时 1 个月的跟踪记录,结果表明,单个鱼类保持着独立的觅食空间,重叠极少,而且这种分离在时间上是稳定的。当潮汐驱动的水流发生逆转时,这种分隔得以保持,同时发现每条鱼相对于珊瑚及其邻居的位置也发生了相应的逆转。我们认为,在我们的研究中观察到的稳定空间分隔是一种主要机制,通过这种机制,定点附着物种可以组织起来,以减少群体内部的竞争。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Space partitioning within groups of social coral reef fish

Space partitioning within groups of social coral reef fish

Site-attached fish that form social groups may face a trade-off between the advantages of group living and the disadvantages related to intra-group competition for food. A possible solution for the latter is space partitioning among group members. Technological limitations related to individual tagging and underwater tracking hindered such spatial studies in grouping fishes. Here, using underwater video cameras and recent developments in deep learning tools, we successfully tracked the 3D movements of individually tagged fish in 4 groups of the damselfish Dascyllus marginatus in the coral reef of Eilat, Red Sea. Our findings, based on tracking sessions lasting 3–11 min that were recorded during a period of > 1 month, show that the individual fish kept separate foraging spaces with minimal overlap and that this separation was stable in time. When the tidally driven current reversed, the separation was kept, and a corresponding reversal was found in the positions of each fish relative to the coral and its neighbors. We propose that the stable spatial partitioning observed in our study is a primary mechanism through which site-attached species can organize themselves in order to reduce intra-group competition.

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来源期刊
Coral Reefs
Coral Reefs 生物-海洋与淡水生物学
CiteScore
6.80
自引率
11.40%
发文量
111
审稿时长
4-8 weeks
期刊介绍: Coral Reefs, the Journal of the International Coral Reef Society, presents multidisciplinary literature across the broad fields of reef studies, publishing analytical and theoretical papers on both modern and ancient reefs. These encourage the search for theories about reef structure and dynamics, and the use of experimentation, modeling, quantification and the applied sciences. Coverage includes such subject areas as population dynamics; community ecology of reef organisms; energy and nutrient flows; biogeochemical cycles; physiology of calcification; reef responses to natural and anthropogenic influences; stress markers in reef organisms; behavioural ecology; sedimentology; diagenesis; reef structure and morphology; evolutionary ecology of the reef biota; palaeoceanography of coral reefs and coral islands; reef management and its underlying disciplines; molecular biology and genetics of coral; aetiology of disease in reef-related organisms; reef responses to global change, and more.
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