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Responses of Neodiprion sertifer (Hym., Diprionidae) larvae to variation in needle resin acid concentration in Scots pine.欧洲松叶蜂幼虫对苏格兰松针叶树脂酸浓度变化的反应
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Contributions of female oviposition patterns and larval behavior to group defense in conifer sawflies (hymenoptera: diprionidae).雌性产卵模式和幼虫行为对针叶树锯蜂(膜翅目:松叶蜂科)群体防御的贡献
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Host plant influence on chemical defense in conifer sawflies (Hymenoptera: Diprionidae).寄主植物对针叶树锯角叶蜂(膜翅目:松叶蜂科)化学防御的影响
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Can Evolution Supply What Ecology Demands?进化能否满足生态需求?
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Predation risk drives social complexity in cooperative breeders.捕食风险推动了合作繁殖者的社会复杂性。
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生态条件改变了具有化学防御能力的叶蜂的合作行为及其代价。

Ecological conditions alter cooperative behaviour and its costs in a chemically defended sawfly.

机构信息

Centre of Excellence in Biological Interactions, Department of Biological and Environmental Sciences, University of Jyväskylä, Jyväskylä, Finland

Centre of Excellence in Biological Interactions, Department of Biological and Environmental Sciences, University of Jyväskylä, Jyväskylä, Finland.

出版信息

Proc Biol Sci. 2018 Aug 1;285(1884):20180466. doi: 10.1098/rspb.2018.0466.

DOI:10.1098/rspb.2018.0466
PMID:30068673
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6111175/
Abstract

The evolution of cooperation and social behaviour is often studied in isolation from the ecology of organisms. Yet, the selective environment under which individuals evolve is much more complex in nature, consisting of ecological and abiotic interactions in addition to social ones. Here, we measured the life-history costs of cooperative chemical defence in a gregarious social herbivore, pine sawfly larvae, and how these costs vary under different ecological conditions. We ran a rearing experiment where we manipulated diet (resin content) and attack intensity by repeatedly harassing larvae to produce a chemical defence. We show that forcing individuals to allocate more to cooperative defence (high attack intensity) incurred a clear cost by decreasing individual survival and potency of chemical defence. Cooperative behaviour and the magnitude of its costs were further shaped by host plant quality. The number of individuals participating in group defence, immune responses and female growth decreased on a high resin diet under high attack intensity. We also found some benefits of cheating: non-defending males had higher growth rates across treatments. Taken together, these results suggest that ecological interactions can shape the adaptive value of cooperative behaviour and maintain variation in the frequency of cooperation and cheating.

摘要

合作和社会行为的进化通常是在与生物体生态学隔离的情况下进行研究的。然而,个体进化所处的选择环境在自然界中要复杂得多,除了社会相互作用外,还包括生态和非生物相互作用。在这里,我们测量了群居社会性食草昆虫松毛虫幼虫合作化学防御的生活史成本,以及这些成本在不同生态条件下如何变化。我们进行了一项饲养实验,通过反复骚扰幼虫来人为地改变饮食(树脂含量)和攻击强度,以产生化学防御。结果表明,迫使个体分配更多资源用于合作防御(高强度攻击)会明显降低个体的存活率和化学防御能力。合作行为及其成本的大小还受到宿主植物质量的影响。在高强度攻击下,高树脂饮食会降低参与群体防御的个体数量、免疫反应和雌性生长。我们还发现了欺骗的一些好处:不参与防御的雄性在所有处理中都有更高的生长速度。综上所述,这些结果表明,生态相互作用可以塑造合作行为的适应价值,并维持合作和欺骗频率的变化。