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光启动了狭心桡足类动物,美欧拟哲水蚤的逃避反应。

Light primes the escape response of the calanoid copepod, Calanus finmarchicus.

机构信息

Bigelow Laboratory for Ocean Sciences, West Boothbay Harbor, Maine, United States of America.

出版信息

PLoS One. 2012;7(6):e39594. doi: 10.1371/journal.pone.0039594. Epub 2012 Jun 27.

Abstract

The timing and magnitude of an escape reaction is often the determining factor governing a copepod's success at avoiding predation. Copepods initiate rapid and directed escapes in response to fluid signals created by predators; however little is known about how copepods modulate their behavior in response to additional sensory input. This study investigates the effect of light level on the escape behavior of Calanus finmarchicus. A siphon flow was used to generate a consistent fluid signal and the behavioral threshold and magnitude of the escape response was quantified in the dark and in the light. The results show that C. finmarchicus initiated their escape reaction further from the siphon and traveled with greater speed in the light than in the dark. However, no difference was found in the escape distance. These results suggest that copepods use information derived from multiple sensory inputs to modulate the sensitivity and strength of the escape in response to an increase risk of predation. Population and IBM models that predict optimal vertical distributions of copepods in response to visual predators need to consider changes in the copepod's behavioral thresholds when predicting predation risk within the water column.

摘要

逃避反应的时机和幅度通常是决定桡足类动物逃避捕食成功的决定性因素。桡足类动物会对捕食者产生的流体信号做出快速而定向的逃避反应;然而,关于桡足类动物如何根据其他感官输入来调节行为,我们知之甚少。本研究调查了光强对长额象鼻蚤(Calanus finmarchicus)逃避行为的影响。使用虹吸管产生一致的流体信号,并在黑暗中和有光条件下量化逃避反应的行为阈值和幅度。结果表明,长额象鼻蚤在远离虹吸管的地方开始逃避反应,并且在有光条件下的逃跑速度比在黑暗中更快。然而,在逃避距离上没有发现差异。这些结果表明,桡足类动物会利用来自多种感官输入的信息来调节逃避反应的灵敏度和强度,以应对捕食风险的增加。预测桡足类动物对视觉捕食者的最优垂直分布的种群和 IBM 模型在预测水柱内的捕食风险时,需要考虑桡足类动物行为阈值的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2f3/3384626/3cac1ccede83/pone.0039594.g001.jpg

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