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损伤、消化和防御:警报线索和信息素在诱导猎物防御中的作用。

Damage, digestion, and defence: the roles of alarm cues and kairomones for inducing prey defences.

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, PA 15260, USA.

出版信息

Ecol Lett. 2005 May;8(5):505-12. doi: 10.1111/j.1461-0248.2005.00744.x.

Abstract

Inducible defences are widely used for studying phenotypic plasticity, yet frequently we know little about the cues that induce these defences. For aquatic prey, defences are induced by chemical cues from predators (kairomones) and injured prey (alarm cues). Rarely has anyone determined the separate and combined effects of these cues, particularly across phylogenetically diverse prey types. We examined how tadpoles (Hyla versicolor) altered their defences when 10 different prey were either crushed by hand or consumed by predators. Across all prey types, crushing induced only a subset of the defences induced by consumption. Consuming vs. crushing produced additive responses for behaviour but synergistic responses for morphology and growth. Moreover, we discovered the first extensive evidence that prey responses to different alarm cues depends on prey phylogeny. These results suggest that the amount of information available to the prey affects both the quantitative and qualitative nature of the defended phenotype.

摘要

诱导防御被广泛用于研究表型可塑性,但我们通常对诱导这些防御的线索知之甚少。对于水生猎物,防御是由捕食者(信息素)和受伤猎物(警报线索)的化学线索诱导的。很少有人确定这些线索的单独和组合作用,特别是在具有不同进化史的猎物类型中。我们研究了当 10 种不同的猎物被手压碎或被捕食者消耗时,蝾螈(Hyla versicolor)如何改变它们的防御。在所有的猎物类型中,压碎只诱导了部分由消耗诱导的防御。消耗与压碎产生了行为上的加性反应,但在形态和生长上产生了协同反应。此外,我们发现了第一个广泛的证据,表明猎物对不同警报线索的反应取决于猎物的进化史。这些结果表明,猎物获得的信息量会影响防御表型的数量和质量。

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