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灵活的防御策略:竞争会改变在行为防御与形态防御方面的投入。

Flexible defense strategies: competition modifies investment in behavioral vs. morphological defenses.

作者信息

Teplitsky Céline, Laurila Anssi

机构信息

Population and Conservation Biology/Department of Ecology and Evolution, Evolutionary Biology Center, Uppsala University, Norbyvägen 18d, 75236 Uppsala, Sweden.

出版信息

Ecology. 2007 Jul;88(7):1641-6. doi: 10.1890/06-1703.1.

Abstract

Competition is predicted to affect the expression of inducible defenses, but because costs of behavioral and morphological antipredator defenses differ along resource gradients, its effects on defenses may depend on the traits considered. We tested the predictions from different defense models in tadpoles of the common frog Rana temporaria, which exhibit both types of defenses. In an outdoor experiment, we exposed the tadpoles to nonlethal predators (Aeshna dragonfly larvae) and to a gradient of intraspecific competition. Morphological responses did not follow any of the expected patterns, since investment in defense was not affected by resource level. Instead, tail depth decreased in the absence of predators. Behavioral defenses followed a state-dependent model. Overall, the defense strategy of the tadpoles revealed a shift from morphological and behavioral defenses at low tadpole density to morphological defense only at high density. This difference probably reflects the different efficiency of the defenses. Hiding is an effective means of defense, but it is unsustainable when resources are scarce. Morphological responses become more important with increasing density to compensate for the increase in behavioral risk-taking. Our results indicate that competition can strongly affect reaction norms of inducible defenses and highlight the importance of integrating ecological parameters that affect the cost-benefit balance of phenotypic plasticity.

摘要

据预测,竞争会影响诱导性防御的表达,但由于行为和形态上的反捕食防御成本会随着资源梯度而有所不同,其对防御的影响可能取决于所考虑的特征。我们在普通青蛙(林蛙)的蝌蚪中测试了不同防御模型的预测结果,这些蝌蚪表现出两种类型的防御。在一项户外实验中,我们将蝌蚪暴露于非致命性捕食者(艾氏蜻蜓幼虫)以及种内竞争梯度环境中。形态学反应并未遵循任何预期模式,因为防御投入并未受到资源水平的影响。相反,在没有捕食者的情况下,尾巴深度减小。行为防御遵循一种状态依赖模型。总体而言,蝌蚪的防御策略显示出从低密度时的形态和行为防御向高密度时仅形态防御的转变。这种差异可能反映了防御方式的不同效率。隐藏是一种有效的防御手段,但在资源稀缺时是不可持续的。随着密度增加,形态学反应变得更为重要,以补偿行为冒险增加带来的影响。我们的结果表明,竞争能够强烈影响诱导性防御的反应规范,并突出了整合影响表型可塑性成本效益平衡的生态参数的重要性。

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