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鱼类初始报警信号的证据。

Evidence for incipient alarm signalling in fish.

机构信息

Biosciences Department, Minnesota State University Moorhead, Moorhead, Minnesota.

出版信息

J Anim Ecol. 2019 Sep;88(9):1278-1280. doi: 10.1111/1365-2656.13062.

DOI:10.1111/1365-2656.13062
PMID:31497889
Abstract

In Focus: Bairos-Novak, K.R., Ferrari, M.C.O., & Chivers, D.P. (2019). A novel alarm signal in aquatic prey: Familiar minnows coordinate group defences against predators through chemical disturbance cues. Journal of Animal Ecology, 88, 1281-1290, https://doi.org/10.1111/1365-2656.12986. Chemicals released during predation have long been studied as cues to nearby prey that predators are active in the vicinity. Until now, these chemicals have been labelled as cues because there was no compelling evidence for the necessary components of a communication system, namely (a) voluntary control of release of information, (b) capacity for graded responses and (c) the presence of specialized structures for the production and release of the signal. New findings by Bairos-Novak, Ferrari, and Chivers (2019) show that fathead minnows alter the potency of disturbance "cues" when in the presence of other fathead minnows compared to when they are alone and produce either more or different disturbance "cues" when in the presence of familiar conspecifics compared to when they are in the presence of unfamiliar conspecifics. The behavioural response to these cues is shoaling, which would confer fitness benefits to the sender, thereby qualifying as a signal rather than a cue. This is a significant advancement in the field of chemical ecology of aquatic organisms because disturbance "cues" by fathead minnows bear two of the three hallmarks of an incipient disturbance "signal".

摘要

聚焦

Bairos-Novak、K.R.、Ferrari、M.C.O. 和 Chivers、D.P.(2019 年)。水生猎物中的新型警报信号:熟悉的小鱼通过化学干扰线索协调群体防御捕食者。动物生态学杂志,88,1281-1290,https://doi.org/10.1111/1365-2656.12986. 捕食过程中释放的化学物质长期以来一直被研究为附近猎物的线索,表明捕食者在附近活跃。到目前为止,这些化学物质被标记为线索,因为没有令人信服的证据表明通信系统的必要组成部分,即 (a) 自愿控制信息的释放,(b) 分级反应的能力和 (c) 用于产生和释放信号的专门结构。Bairos-Novak、Ferrari 和 Chivers(2019 年)的新发现表明,与单独存在时相比,当胖头鱼小鱼处于其他胖头鱼小鱼存在时,它们会改变干扰“线索”的效力,并且当它们处于熟悉的同种鱼存在时,它们会产生更多或不同的干扰“线索”比当它们处于陌生的同种鱼存在时。对这些线索的行为反应是集群,这将赋予发送者适应度优势,从而将其定性为信号而不是线索。这是水生生物化学生态学领域的一项重大进展,因为胖头鱼小鱼的干扰“线索”具有三个初始干扰“信号”特征中的两个。

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