Department of Ecology and Evolutionary Biology, 321 Steinhaus Hall, University of California at Irvine, Irvine, CA 92697-2525, USA.
Integr Comp Biol. 2013 Nov;53(5):799-809. doi: 10.1093/icb/ict064. Epub 2013 May 30.
Fish resist being swept downstream by swimming against a current. Mexican blind cavefish (Astyanax fasciatus) exhibit this innate behavior, rheotaxis, without the aid of vision, but it has been debated whether this ability requires sensing flow with the lateral line system. We tested the role of the lateral line by comparing swimming in a flow chamber in a group of cavefish with a compromised lateral line with a control group. Consistent with previous studies, we found that cavefish orient toward flow and more frequently swim upstream at a higher flow speed. We found that these responses to flow were indistinguishable between fish with compromised and functioning lateral line systems. Rheotaxis was also unaltered by exposing fish to varying degrees of turbulence. These results suggest that the sensing of flow is unnecessary for rheotaxis in cavefish. It appears that tactile stimuli provide a sufficient means of executing this behavior in fish and that rheotaxis may not be a major function of the lateral line system.
鱼类通过逆流游动来抵抗被冲向下游。墨西哥盲眼洞穴鱼(Astyanax fasciatus)表现出这种先天的趋流行为,即趋流性,而无需视觉的帮助,但人们一直争论这种能力是否需要通过侧线系统来感知水流。我们通过比较一组侧线受损的洞穴鱼和对照组在流动室中的游泳情况,来测试侧线的作用。与之前的研究一致,我们发现洞穴鱼会朝向水流,并在更高的流速下更频繁地逆流而上。我们发现,这些对水流的反应在侧线系统受损和功能正常的鱼类之间没有区别。鱼类暴露在不同程度的湍流中,趋流性也没有改变。这些结果表明,对于洞穴鱼来说,趋流性不需要通过侧线系统来感知水流。似乎触觉刺激为鱼类执行这种行为提供了足够的手段,而且趋流性可能不是侧线系统的主要功能。