作者
Sabrina Fossette, Adrian Christopher Gleiss, Julien Chalumeau, Thomas Bastian, Claire Denise Armstrong, Sylvie Vandenabeele, Mikhail Karpytchev, Graeme Clive Hays
发表日期
2015/2/2
期刊
Current Biology
卷号
25
期号
3
页码范围
342-347
出版商
Elsevier
简介
Cross-flows (winds or currents) affect animal movements [1–3]. Animals can temporarily be carried off course or permanently carried away from their preferred habitat by drift depending on their own traveling speed in relation to that of the flow [1]. Animals able to only weakly fly or swim will be the most impacted (e.g., [4]). To circumvent this problem, animals must be able to detect the effects of flow on their movements and respond to it [1, 2]. Here, we show that a weakly swimming organism, the jellyfish Rhizostoma octopus, can orientate its movements with respect to currents and that this behavior is key to the maintenance of blooms and essential to reduce the probability of stranding. We combined in situ observations with first-time deployment of accelerometers on free-ranging jellyfish and simulated the behavior observed in wild jellyfish within a high-resolution hydrodynamic model. Our results show that jellyfish …
引用总数
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