Department of Biological Sciences, Indian Institute of Science Education and Research, Mohali, Punjab, India.
Department of Biological Sciences, Indian Institute of Science Education and Research, Kolkata, West Bengal, India.
Biol Lett. 2019 Jul 26;15(7):20190289. doi: 10.1098/rsbl.2019.0289. Epub 2019 Jul 17.
Fish inhabiting human-dominated ecosystems are prone to altered sensory environments in which they must live and function. Increased turbidity is one such change that they must deal with. We tested whether an increase in water turbidity and the presence of visual landmarks (coloured stones) affect the foraging efficiency of wild zebrafish. We also tested the influence of extended exposure to differing turbidity levels on the subsequent foraging efficiency of acclimatized individuals. Feeding latency (time taken to find food) increased significantly with increase in turbidity levels from a minimum of 4 s to ca 300 s. However, extended exposure of fish to varying levels of turbidity decreased feeding latencies in acclimatized conditions, indicating that acclimatization to the immediate visual environment plays an important role in determining foraging success. Most significantly, we found that feeding latencies in turbid conditions decreased significantly if visual landmarks were present. This demonstrates that zebrafish use visual landmark cues to navigate to foraging sites when visibility is impaired. This study has important implications on the role of behavioural plasticity and spatial learning in animals that allow them to cope with altered sensory environments such as episodes of enhanced turbidity that could be natural or anthropogenic.
生活在人为主导生态系统中的鱼类容易受到感官环境改变的影响,它们必须在这些改变的环境中生存和活动。浊度增加就是鱼类必须应对的一种改变。我们测试了水浊度增加和视觉地标(彩色石头)的存在是否会影响野生斑马鱼的觅食效率。我们还测试了长时间暴露在不同浊度水平下对适应个体随后觅食效率的影响。随着浊度水平从最低的 4 秒增加到大约 300 秒,摄食潜伏期(找到食物所需的时间)显著增加。然而,在适应条件下,鱼类长时间暴露于不同浊度水平会降低摄食潜伏期,这表明对即时视觉环境的适应在决定觅食成功方面起着重要作用。最重要的是,如果存在视觉地标,在浑浊条件下的摄食潜伏期会显著降低。这表明斑马鱼在能见度降低时会利用视觉地标线索来找到觅食地点。这项研究对于行为可塑性和空间学习在动物中的作用具有重要意义,这些动物可以利用行为可塑性和空间学习来应对感官环境的改变,例如浊度增加的情况,这种情况可能是自然的,也可能是人为的。