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首页> 外文期刊>Nature >ALTERNATIVE ANTIPREDATOR DEFENCES AND GENETIC POLYMORPHISM IN A PELAGIC PREDATOR-PREY SYSTEM
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ALTERNATIVE ANTIPREDATOR DEFENCES AND GENETIC POLYMORPHISM IN A PELAGIC PREDATOR-PREY SYSTEM

机译:掠食者-捕食系统中的替代抗体防御与遗传多态性

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DIEL vertical migration (DVM) of zooplankton is generally considered to be a predator-avoidance strategy: zooplankton migrate to greater depths during the day to reduce their chance of being detected by visual predators (fish)(1). Both phenotypic plasticity and interpopulational genetic variability in DVM patterns exist in zooplankton(2,3). We used large indoor mesocosms ('plankton towers'(4)) to study intrapopulational genetic variation for day depth in a Daphnia hyalina x galeata hybrid population. Clones differing in body size also differed in vertical distribution, with the largest clone residing at the greatest depth during the day. A selection experiment in the presence of fish indicates that alternative antipredator strategies, which involve a complex association between habitat-selection traits and life-history strategies, might be an important factor underlying intrapopulational genetic polymorphism in zooplankton, through a balancing of fitness effects in the presence of visual predators. [References: 29]
机译:浮游动物的DIEL垂直迁移(DVM)通常被认为是避免捕食者的策略:浮游动物在白天迁移到更深的深度,以减少它们被视觉掠食者(鱼)发现的机会(1)。 DVM模式的表型可塑性和种群间遗传变异都存在于浮游动物中(2,3)。我们使用大型室内中观空间(“浮游生物塔”(4))研究了水蚤(Daphnia hyalina x galeata)杂种种群的种群内遗传多样性对日深度的影响。体型不同的克隆的垂直分布也不同,最大的克隆在一天中的深度最大。在鱼类存在下进行的选择实验表明,通过平衡栖息地适应性效应,替代的捕食者策略可能会成为浮游动物种群内遗传多态性的重要基础,而这种策略涉及栖息地选择特征与生活史策略之间的复杂关联。视觉掠食者的存在。 [参考:29]

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