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Predator ontogeny affects expression of inducible defense morphology in rotifers

机译:捕食者Ontogeny影响轮虫诱导型防御形态的表达

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Many prey organisms show induced morphological responses to predators including changes in protective spine length, such as in rotifers, although previous studies have mainly focused on how prey become larger than the predator gape-size optimum. Here we show that a large-sized predator makes prey rotifers escape below the gape-size optimum of the predator by reducing spine length. In experiments and field studies we show that during part of their ontogeny fish larvae feed intensively on the common rotifer Keratella cochlearis, and that larval fish predation reduces rotifer spine length both through induction of shorter spines and selective predation on long-spined individuals. We also describe a global scale pattern in spine length of K. cochlearis, showing an increasing variance in spine length with latitude. This pattern may be explained by differences in fish reproduction from once per year at high latitudes to several times per year at lower latitudes. That spine length is adaptively adjusted to the ontogeny of a dominant predator taxa provides a novel view on our understanding of factors affecting temporal and spatial variations in prey defense morphology.
机译:许多猎物生物显示出对捕食者的形态反应,包括保护脊柱长度的变化,例如在轮虫中,尽管之前的研究主要集中在猎物的大于最佳捕食者夸大尺寸的牺牲品。在这里,我们表明,通过减少脊柱长度,大尺寸的捕食者使猎物旋转器逸出到捕食者的椭p展尺寸最佳。在实验和现场研究中,我们表明,在一部分其组来的鱼类幼虫期间在普通的旋转器角膜耳耳蜗上饲喂,并且幼虫鱼类通过诱导较短的脊柱和长翼的人的选择性捕食来减少转子脊柱长度。我们还描述了K.Cochlearis的脊柱长度的全球规模模式,显示了脊柱长度的差异越来越差异。这种模式可以通过每年在每年在较低纬度的高纬度下从一次鱼繁殖的差异解释。这种脊柱长度适自适应地调整到主导捕食者分类群的Ontogeny提供了一种关于我们对影响猎物防御形态的时间和空间变化的因素的重要性的新颖观点。

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