Jiun-Shian Wu José, Chiao Chuan-Chin
Institute of Systems Neuroscience, National Tsing Hua University, Hsinchu, Taiwan.
Department of Life Science, National Tsing Hua University, Hsinchu, Taiwan.
iScience. 2023 Oct 6;26(11):108122. doi: 10.1016/j.isci.2023.108122. eCollection 2023 Nov 17.
Previous studies have demonstrated that the size of the prey relative to the cuttlefish is important to the choice between tentacular strike and jump-on tactics. In the present study, we investigated the decision-making in the cuttlefish's tactical switch when preying on the same size prey. A servomotor system controlling the movement of a shrimp was used to elicit the cuttlefish's preying behavior. The success rate of prey capture and the kinematics of visual attack were examined systematically. The results showed that the jump-on behavior appeared mostly after a miss attack by previous tentacular strike on a moving shrimp. Compared with a visual attack with tentacles, the jump-on tactic has over a shorter attacking distance and wider attacking angles. Thus, these two different preying tactics have different operating ranges relative to the prey. More importantly, the cuttlefish can adjust their preying tactics adaptively depending on their prior preying experience.
先前的研究表明,猎物相对于乌贼的大小对于触手攻击和扑击策略之间的选择很重要。在本研究中,我们调查了乌贼在捕食相同大小猎物时战术转换的决策过程。使用一个控制虾运动的伺服电机系统来引发乌贼的捕食行为。系统地检查了猎物捕获成功率和视觉攻击的运动学。结果表明,扑击行为大多出现在先前对移动虾的触手攻击未命中之后。与用触手进行视觉攻击相比,扑击策略的攻击距离更短,攻击角度更宽。因此,这两种不同的捕食策略相对于猎物具有不同的作用范围。更重要的是,乌贼可以根据其先前的捕食经验自适应地调整其捕食策略。