Taniguchi Darcy A A, Gagnon Yakir, Wheeler Benjamin R, Johnsen Sönke, Jaffe Jules S
Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California, 92093, United States of America.
Biology Department, Duke University, Durham, North Carolina, 27708, United States of America.
PLoS One. 2015 Oct 14;10(10):e0138690. doi: 10.1371/journal.pone.0138690. eCollection 2015.
Cuttlefish are cephalopods capable of rapid camouflage responses to visual stimuli. However, it is not always clear to what these animals are responding. Previous studies have found cuttlefish to be more responsive to lateral stimuli rather than substrate. However, in previous works, the cuttlefish were allowed to settle next to the lateral stimuli. In this study, we examine whether juvenile cuttlefish (Sepia officinalis) respond more strongly to visual stimuli seen on the sides versus the bottom of an experimental aquarium, specifically when the animals are not allowed to be adjacent to the tank walls. We used the Sub Sea Holodeck, a novel aquarium that employs plasma display screens to create a variety of artificial visual environments without disturbing the animals. Once the cuttlefish were acclimated, we compared the variability of camouflage patterns that were elicited from displaying various stimuli on the bottom versus the sides of the Holodeck. To characterize the camouflage patterns, we classified them in terms of uniform, disruptive, and mottled patterning. The elicited camouflage patterns from different bottom stimuli were more variable than those elicited by different side stimuli, suggesting that S. officinalis responds more strongly to the patterns displayed on the bottom than the sides of the tank. We argue that the cuttlefish pay more attention to the bottom of the Holodeck because it is closer and thus more relevant for camouflage.
乌贼是头足类动物,能够对视觉刺激做出快速的伪装反应。然而,这些动物究竟对什么做出反应并不总是很清楚。先前的研究发现,乌贼对侧向刺激的反应比对底物的反应更强烈。然而,在先前的研究中,乌贼被允许在侧向刺激旁边停留。在本研究中,我们研究了幼年乌贼(Sepia officinalis)对实验水族箱侧面与底部看到的视觉刺激的反应是否更强烈,特别是当动物不被允许靠近水箱壁时。我们使用了海底全息甲板,这是一种新型水族箱,采用等离子显示屏来创建各种人工视觉环境,而不会干扰动物。一旦乌贼适应环境,我们比较了在全息甲板底部与侧面展示各种刺激时所引发的伪装图案的变异性。为了表征伪装图案,我们根据均匀、干扰和斑驳图案对它们进行分类。来自不同底部刺激引发的伪装图案比不同侧面刺激引发的伪装图案更具变异性,这表明Sepia officinalis对水箱底部展示的图案的反应比对侧面的反应更强烈。我们认为乌贼更关注全息甲板的底部,因为它更近,因此对伪装更相关。