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捕食者诱导的非线性反应规范的演变

Evolution of a predator-induced, nonlinear reaction norm.

作者信息

Carter Mauricio J, Lind Martin I, Dennis Stuart R, Hentley William, Beckerman Andrew P

机构信息

Centro Nacional del Medio Ambiente, Universidad de Chile, Avenida Larrain 9975, La Reina, Santiago, Chile.

Departamento de Ecología, Facultad de Ecología y Recursos Naturales, Universidad Andres Bello, Santiago, Chile.

出版信息

Proc Biol Sci. 2017 Aug 30;284(1861). doi: 10.1098/rspb.2017.0859.

Abstract

Inducible, anti-predator traits are a classic example of phenotypic plasticity. Their evolutionary dynamics depend on their genetic basis, the historical pattern of predation risk that populations have experienced and current selection gradients. When populations experience predators with contrasting hunting strategies and size preferences, theory suggests contrasting micro-evolutionary responses to selection. is an ideal species to explore the micro-evolutionary response of anti-predator traits because they face heterogeneous predation regimes, sometimes experiencing only invertebrate midge predators and other times experiencing vertebrate fish and invertebrate midge predators. We explored plausible patterns of adaptive evolution of a predator-induced morphological reaction norm. We combined estimates of selection gradients that characterize the various habitats that experiences with detail on the quantitative genetic architecture of inducible morphological defences. Our data reveal a fine scale description of daphnid defensive reaction norms, and a strong covariance between the sensitivity to cues and the maximum response to cues. By analysing the response of the reaction norm to plausible, predator-specific selection gradients, we show how in the context of this covariance, micro-evolution may be more uniform than predicted from size-selective predation theory. Our results show how covariance between the sensitivity to cues and the maximum response to cues for morphological defence can shape the evolutionary trajectory of predator-induced defences in .

摘要

可诱导的反捕食性状是表型可塑性的经典例子。它们的进化动态取决于其遗传基础、种群所经历的捕食风险的历史模式以及当前的选择梯度。当种群面临具有不同狩猎策略和体型偏好的捕食者时,理论表明对选择会有不同的微观进化反应。[具体物种名称]是探索反捕食性状微观进化反应的理想物种,因为它们面临着异质的捕食环境,有时仅遭遇无脊椎摇蚊捕食者,而有时则会遭遇脊椎动物鱼类和无脊椎摇蚊捕食者。我们探究了捕食者诱导的形态反应规范的适应性进化的合理模式。我们将表征[具体物种名称]所经历的各种栖息地的选择梯度估计与可诱导形态防御的数量遗传结构细节相结合。我们的数据揭示了水蚤防御反应规范的精细尺度描述,以及对线索的敏感性与对线索的最大反应之间的强协方差。通过分析反应规范对合理的、特定捕食者的选择梯度的反应,我们展示了在这种协方差的背景下,微观进化可能比大小选择性捕食理论预测的更加一致。我们的结果表明,形态防御对线索的敏感性与对线索的最大反应之间的协方差如何塑造[具体物种名称]中捕食者诱导防御的进化轨迹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f56/5577476/e2171daeca78/rspb20170859-g1.jpg

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