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警戒色的多样性:选择性悖论还是常态?

Diversity in warning coloration: selective paradox or the norm?

机构信息

Centre for Ecology & Conservation, College of Life & Environmental Sciences, University of Exeter, Penryn Campus, Penryn, Cornwall, TR10 9FE, U.K.

Centre of Excellence in Biological Interactions, Department of Biological and Environmental Science, University of Jyväskylä, Jyväskylä, 40014, Finland.

出版信息

Biol Rev Camb Philos Soc. 2019 Apr;94(2):388-414. doi: 10.1111/brv.12460. Epub 2018 Aug 27.

Abstract

Aposematic theory has historically predicted that predators should select for warning signals to converge on a single form, as a result of frequency-dependent learning. However, widespread variation in warning signals is observed across closely related species, populations and, most problematically for evolutionary biologists, among individuals in the same population. Recent research has yielded an increased awareness of this diversity, challenging the paradigm of signal monomorphy in aposematic animals. Here we provide a comprehensive synthesis of these disparate lines of investigation, identifying within them three broad classes of explanation for variation in aposematic warning signals: genetic mechanisms, differences among predators and predator behaviour, and alternative selection pressures upon the signal. The mechanisms producing warning coloration are also important. Detailed studies of the genetic basis of warning signals in some species, most notably Heliconius butterflies, are beginning to shed light on the genetic architecture facilitating or limiting key processes such as the evolution and maintenance of polymorphisms, hybridisation, and speciation. Work on predator behaviour is changing our perception of the predator community as a single homogenous selective agent, emphasising the dynamic nature of predator-prey interactions. Predator variability in a range of factors (e.g. perceptual abilities, tolerance to chemical defences, and individual motivation), suggests that the role of predators is more complicated than previously appreciated. With complex selection regimes at work, polytypisms and polymorphisms may even occur in Müllerian mimicry systems. Meanwhile, phenotypes are often multifunctional, and thus subject to additional biotic and abiotic selection pressures. Some of these selective pressures, primarily sexual selection and thermoregulation, have received considerable attention, while others, such as disease risk and parental effects, offer promising avenues to explore. As well as reviewing the existing evidence from both empirical studies and theoretical modelling, we highlight hypotheses that could benefit from further investigation in aposematic species. Finally by collating known instances of variation in warning signals, we provide a valuable resource for understanding the taxonomic spread of diversity in aposematic signalling and with which to direct future research. A greater appreciation of the extent of variation in aposematic species, and of the selective pressures and constraints which contribute to this once-paradoxical phenomenon, yields a new perspective for the field of aposematic signalling.

摘要

警戒理论历史上预测,由于频率依赖学习,捕食者应该选择警告信号趋同于单一形式。然而,在密切相关的物种、种群中,以及在同一种群中的个体中,观察到警告信号广泛变异。最近的研究增加了对这种多样性的认识,挑战了警戒动物信号形态单一的范式。在这里,我们对这些不同的研究进行了综合分析,确定了导致警戒信号变异的三个广泛的解释类别:遗传机制、捕食者之间的差异和捕食者行为,以及信号受到的替代选择压力。产生警戒颜色的机制也很重要。对一些物种(尤其是海伦娜蝴蝶)警告信号遗传基础的详细研究开始揭示遗传结构的作用,这些遗传结构促进或限制了关键过程,如多态性、杂交和物种形成的进化和维持。关于捕食者行为的研究正在改变我们对捕食者群体作为单一同质选择剂的看法,强调了捕食者-猎物相互作用的动态性质。在一系列因素(如感知能力、对化学防御的容忍度和个体动机)中,捕食者的变异性表明,捕食者的作用比以前认识的更为复杂。在复杂的选择机制作用下,穆勒拟态系统甚至可能出现多态性和多态性。同时,表型通常是多功能的,因此受到额外的生物和非生物选择压力的影响。其中一些选择压力,主要是性选择和体温调节,已经受到了相当多的关注,而其他一些选择压力,如疾病风险和父母效应,则提供了有前途的探索途径。我们不仅回顾了来自经验研究和理论建模的现有证据,还强调了一些假说,这些假说可以从进一步研究警戒物种中受益。最后,通过整理已知的警告信号变异实例,我们为理解警戒信号多样性的分类学分布提供了有价值的资源,并以此为指导未来的研究。对警戒物种变异程度以及导致这种曾经悖论现象的选择压力和约束的更深入了解,为警戒信号领域提供了一个新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3804/6446817/6ddf9174ac39/BRV-94-388-g001.jpg

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