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Functional diversity and trade‐offs in divergent antipredator morphologies in herbivorous insects

机译:在食草昆虫中发散的反毒剂形态的功能多样性和权衡

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摘要

Predator–prey interactions may be responsible for enormous morphological diversity in prey species. We performed predation experiments with morphological manipulations (ablation) to investigate the defensive function of dorsal spines and explanate margins in Cassidinae leaf beetles against three types of predators: assassin bugs (stinger), crab spiders (biter), and tree frogs (swallower). There was mixed support for the importance of primary defense mechanisms (i.e., preventing detection or identification). Intact spined prey possessing dorsal spines were more likely to be attacked by assassin bugs and tree frogs, while intact armored prey possessing explanate margins were likely to avoid attack by assassin bugs. In support of the secondary defense mechanisms (i.e., preventing subjugation), dorsal spines had a significant physical defensive function against tree frogs, and explanate margins protected against assassin bugs and crab spiders. Our results suggest a trade‐off between primary and secondary defenses. Dorsal spines improved the secondary defense but weakened the primary defense against tree frogs. We also detected a trade‐off in which dorsal spines and explanate margins improved secondary defenses against mutually exclusive predator types. Adaptation to different predatory regimes and functional trade‐offs may mediate the diversification of external morphological defenses in Cassidinae leaf beetles.
机译:捕食者 - 猎物互动可能对猎物物种的巨大形态多样性负责。我们对形态操纵(消融)进行了捕食试验,以研究背刺的防御功能,并解释辛西亚岛叶片的边缘叶虫,针对三种类型的捕食者:刺客虫(Stinger),蟹蜘蛛(BITTER)和树蛙(燕子)。对原发性防御机制的重要性有混合支持(即,预防检测或识别)。拥有背刺的完整刺绣猎物更有可能被刺客虫和树蛙攻击,而完整的装甲猎物具有解释的边距可能会避免刺激虫子的攻击。为了支持二级防御机制(即,预防序列),背部脊柱对树蛙进行了重大的物理防守功能,并解释了防止刺客虫和蟹蜘蛛的利润。我们的成绩表明,初级和二级防御之间的权衡。背部刺改善了二级防御,但削弱了林蛙的主要防御。我们还检测到折衷,其中背刺并解释了利润率改善了互斥捕食者类型的次要防御。适应不同的掠夺性制度和功能性权衡可能会在辛西亚甘醇叶片甲虫中介绍外部形态防御的多样化。

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