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地磁场强度会影响斑马鱼群体游动的趋流阈值。

Earth-strength magnetic field affects the rheotactic threshold of zebrafish swimming in shoals.

作者信息

Cresci Alessandro, De Rosa Rosario, Putman Nathan F, Agnisola Claudio

机构信息

Rosenstiel School of Marine & Atmospheric Science, 4600 Rickenbacker Causeway, Miami, FL 33149-1098, USA.

Department of Physics, University of Naples Federico II, MSA Campus, Via Cinthia 21, 80126 Napoli, Italy; INFN, Section of Naples, MSA Campus, Via Cinthia 21, 80126 Napoli, Italy.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2017 Feb;204:169-176. doi: 10.1016/j.cbpa.2016.11.019. Epub 2016 Nov 30.

Abstract

Rheotaxis, the unconditioned orienting response to water currents, is a main component of fish behavior. Rheotaxis is achieved using multiple sensory systems, including visual and tactile cues. Rheotactic orientation in open or low-visibility waters might also benefit from the stable frame of reference provided by the geomagnetic field, but this possibility has not been explored before. Zebrafish (Danio rerio) form shoals living in freshwater systems with low visibility, show a robust positive rheotaxis, and respond to geomagnetic fields. Here, we investigated whether a static magnetic field in the Earth-strength range influenced the rheotactic threshold of zebrafish in a swimming tunnel. The direction of the horizontal component of the magnetic field relative to water flow influenced the rheotactic threshold of fish as part of a shoal, but not of fish tested alone. Results obtained after disabling the lateral line of shoaling individuals with Co suggest that this organ system is involved in the observed magneto-rheotactic response. These findings constitute preliminary evidence that magnetic fields influence rheotaxis and suggest new avenues for further research.

摘要

趋流性是鱼类对水流的无条件定向反应,是鱼类行为的主要组成部分。趋流性是通过多种感觉系统实现的,包括视觉和触觉线索。在开阔水域或能见度低的水域中,趋流性定向也可能受益于地磁场提供的稳定参考框架,但这种可能性以前尚未被探索过。斑马鱼(Danio rerio)成群生活在能见度低的淡水系统中,表现出强烈的正向趋流性,并对地磁场做出反应。在这里,我们研究了地磁场强度范围内的静磁场是否会影响斑马鱼在游泳隧道中的趋流阈值。磁场水平分量相对于水流的方向影响了作为鱼群一部分的鱼类的趋流阈值,但对单独测试的鱼类没有影响。用钴使群居个体的侧线失活后获得的结果表明,这个器官系统参与了观察到的磁趋流反应。这些发现构成了磁场影响趋流性的初步证据,并为进一步研究提出了新的途径。

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