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The evolution of antipredator behaviour following relaxed and reversed selection in Alaskan threespine stickleback fish

机译:在阿拉斯加三脊刺背鳍鱼中进行放松和反向选择后抗捕食者行为的演变

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摘要

Changing environments, whether through natural or anthropogenic causes, can lead to the loss of some selective pressures (‘relaxed selection’) and possibly even the reinstatement of selective agents not encountered for many generations (‘reversed selection’). We examined the outcome of relaxed and reversed selection in the adaptive radiation of the threespine stickleback fish, Gasterostues aculeatus L., in which isolated populations encounter a variety of predation regimes. Oceanic stickleback, which represent the ancestral founders of the freshwater radiation, encounter many piscivorous fish. Derived, freshwater populations, on the other hand, vary with respect to the presence of predators. Some populations encounter native salmonids, whereas others have not experienced predation by large fish in thousands of generations (relax-selected populations). Some relax-selected populations have had sport fish, including rainbow trout, Oncorhynchus mykiss, introduced within the past several decades (reverse-selected). We examined the behavioural responses of stickleback from three populations of each type to simulated attacks by trout and birds to determine whether relaxed and reversed selection has led to divergence in behaviour, and whether this divergence was predator specific. Fish from trout-free populations showed weak responses to trout, as predicted, but these responses were similar to those of oceanic (ancestral) populations. Fish from populations that co-occur with trout, whether native or introduced, showed elevated antipredator responses, indicating that in freshwater, trout predation selects for enhanced antipredator responses, which can evolve extremely rapidly. Comparison of laboratory-reared and wild-caught individuals suggests a combination of learned and genetic components to this variation. Responses to a model bird flyover were weakly linked to predation environment, indicating that the loss of predation by trout may partially influence the evolution of responses to birds. Our results reject the hypothesis that the consistent presence of predatory birds has been sufficient to maintain responses to piscivorous fish under periods of relaxed selection.
机译:无论是自然因素还是人为因素,不断变化的环境都可能导致某些选择压力的丧失(“放松选择”),甚至可能恢复许多代未曾遇到的选择剂(“逆向选择”)。我们研究了三脊刺背鳍鱼Gasterostues aculeatus L.在适应性辐射中选择放松和反向选择的结果,其中孤立的种群遇到各种捕食机制。代表淡水辐射祖先的海洋棘背鱼遇到许多带鱼的鱼。另一方面,衍生的淡水种群因捕食者的存在而变化。一些种群遇到了本地鲑鱼,而另一些种群则没有经历数千代大型鱼类的捕食(放松选择的种群)。在过去的几十年中,一些放松选择的种群中有运动鱼,包括虹鳟鱼(Oncorhynchus mykiss)(反向选择)。我们检查了每种类型的三个种群的棘背行为对鳟鱼和鸟类的模拟攻击的行为响应,以确定放松和反向选择是否导致了行为差异,以及这种差异是否是捕食者特定的。如预测的那样,无鳟鱼种群的鱼对鳟鱼的反应较弱,但这些反应与海洋(祖传)种群的反应相似。与鳟鱼同时发生的种群的鱼类,无论是原生的还是引进的,都表现出较高的抗捕食者反应,这表明在淡水中,鳟鱼的捕食会选择增强的抗捕食者反应,这种进化非常迅速。比较实验室饲养的个体和野生捕获的个体,表明这种变异结合了学习和遗传因素。对模型飞鸟的响应与捕食环境之间的联系较弱,这表明鳟鱼对捕食的损失可能部分影响对鸟类的响应的演变。我们的结果拒绝了这样的假说,即在宽松选择的时期内,掠食性鸟类的持续存在足以维持对食鱼性鱼类的反应。

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