School of Biological Sciences, The University of Queensland, St Lucia, Queensland 4072, Australia.
Proc Biol Sci. 2010 Jun 22;277(1689):1849-55. doi: 10.1098/rspb.2009.2218. Epub 2010 Feb 24.
Mimics closely resemble unrelated species to avoid predation, capture prey or gain access to hosts or reproductive opportunities. However, the classification of mimicry systems into three established evolutionary mechanisms (protection, reproduction and foraging) can be contentious because multiple benefits may be gained by mimics, causing the evolution of such systems to be driven by more than one selective agent. However, data on such systems are generally speculative or anecdotal. This study provides empirical evidence that dual benefits apply to a coral reef fish mimic in terms of increased access to food (aggressive mimicry) and reduced predation risk (Batesian mimicry). Bicolour fangblennies Plagiotremus laudandus gained access to more reef fish victims, which they attack to feed on fins and scales, when they spent more time associated with their model Meiacanthus atrodorsalis. Furthermore, exact replicas of P. laudandus incurred fewer approaches from potential predators compared with control replicas that varied in resemblance to P. laudandus. Predators with trichromatic visual systems (three distinct spectral sensitivities) could potentially distinguish between replicas based on colour based on theoretical vision models. Therefore, this mimicry system could be best described as Batesian-aggressive mimicry in which mimicry evolution is driven by multiple simultaneous selective pressures.
拟态生物非常相似于不相关的物种,以避免被捕食、捕获猎物或获得宿主或生殖机会。然而,将拟态系统分类为三种已建立的进化机制(保护、繁殖和觅食)可能存在争议,因为拟态生物可能获得多种益处,从而导致此类系统的进化受到多种选择性因素的驱动。然而,关于此类系统的数据通常是推测性的或轶事性的。本研究提供了实证证据,表明双效益适用于珊瑚礁鱼类拟态,即增加获得食物(攻击性拟态)和降低被捕食风险(贝氏拟态)。双色狼牙𫚥虎鱼 Plagiotremus laudandus 与模型梅氏𫚥虎鱼 Meiacanthus atrodorsalis 更多时间在一起时,能够攻击更多的礁鱼作为食物,获得更多的鳍和鳞片,而当它们与模型在一起的时间更多时。此外,与 Plagiotremus laudandus 相似程度不同的对照复制品相比, exact replicas of P. laudandus 受到潜在捕食者的攻击次数更少。具有三色视觉系统(三种不同的光谱敏感度)的捕食者可能能够根据理论视觉模型基于颜色来区分复制品。因此,这种拟态系统可以被描述为贝氏攻击性拟态,其中拟态进化是由多种同时存在的选择性压力驱动的。