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当最优策略对猎物鱼至关重要时。

When Optimal Strategy Matters to Prey Fish.

作者信息

Soto Alberto, Stewart William J, McHenry Matthew J

机构信息

Department of Ecology and Evolutionary Biology, University of California, Irvine, CA 92697, USA.

Department of Ecology and Evolutionary Biology, University of California, Irvine, CA 92697, USA

出版信息

Integr Comp Biol. 2015 Jul;55(1):110-20. doi: 10.1093/icb/icv027. Epub 2015 May 11.

Abstract

Predator-prey interactions are commonly studied with an interest in determining the optimal strategy for prey. However, the implications of deviating from optimal strategy are often unclear. The present study considered these consequences by studying how the direction of an escape response affects the strategy of prey fish. We simulated these interactions with numerical and analytical mathematics and compared our predictions with measurements in zebrafish larvae (Danio rerio), which are preyed upon by adults of the same species. Consistent with existing theory, we treated the minimum distance between predator and prey as the strategic payoff that prey aim to maximize. We found that these interactions may be characterized by three strategic domains that are defined by the speed of predator relative to the prey. The "fast predator" domain occurs when the predator is more than an order of magnitude faster than the prey. The escape direction of the prey had only a small effect on the minimum distance under these conditions. For the "slow predator" domain, when the prey is faster than the predator, we found that differences in direction had no effect on the minimum distance for a broad range of escape angles. This was the regime in which zebrafish were found to operate. In contrast, the optimal escape angle offers a large benefit to the minimum distance in the intermediate strategic domain. Therefore, optimal strategy is most meaningful to prey fish when predators are faster than prey by less than a factor of 10. This demonstrates that the strategy of a prey animal does not matter under certain conditions that are created by the behavior of the predator.

摘要

捕食者与猎物之间的相互作用通常是在旨在确定猎物最优策略的研究兴趣下进行的。然而,偏离最优策略的影响往往并不明确。本研究通过研究逃避反应的方向如何影响猎物鱼类的策略来考虑这些后果。我们用数值和解析数学模拟了这些相互作用,并将我们的预测与斑马鱼幼体(Danio rerio)的测量结果进行了比较,斑马鱼幼体是被同种成年鱼捕食的对象。与现有理论一致,我们将捕食者与猎物之间的最小距离视为猎物旨在最大化的战略回报。我们发现,这些相互作用可能由三个战略域来表征,这三个战略域是由捕食者相对于猎物的速度定义的。当捕食者比猎物快一个数量级以上时,就会出现“快速捕食者”域。在这些条件下,猎物的逃避方向对最小距离只有很小的影响。对于“慢速捕食者”域,当猎物比捕食者快时,我们发现对于广泛的逃避角度范围,方向差异对最小距离没有影响。这就是发现斑马鱼所处的状态。相比之下,在中间战略域中,最优逃避角度对最小距离有很大的益处。因此,当捕食者比猎物快不到10倍时,最优策略对猎物鱼类最有意义。这表明,在由捕食者行为产生的某些条件下,猎物动物的策略并不重要。

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