Cheney Karen L, Côté Isabelle M
School of Integrative Biology, University of Queensland, Brisbane, Queensland 4072, Australia.
Proc Biol Sci. 2007 Sep 7;274(1622):2087-91. doi: 10.1098/rspb.2007.0543.
Mimetic species have evolved to resemble other species to avoid predation (protective mimicry) or gain access to food (aggressive mimicry). Mimicry systems are frequently tripartite interactions involving a mimic, model and 'signal receiver'. Changes in the strength of the relationship between model and signal receiver, owing to shifting environmental conditions, for example, can affect the success of mimics in protective mimicry systems. Here, we show that an experimentally induced shift in the strength of the relationship between a model (bluestreak cleaner fish, Labroides dimidiatus) and a signal receiver (staghorn damselfish, Amblyglyphidodon curacao) resulted in increased foraging success for an aggressive mimic (bluestriped fangblenny, Plagiotremus rhinorhynchos). When the parasite loads of staghorn damselfish clients were experimentally increased, the attack success of bluestriped fangblenny on damselfish also increased. Enhanced mimic success appeared to be due to relaxation of vigilance by parasitized clients, which sought cleaners more eagerly and had lower overall aggression levels. Signal receivers may therefore be more tolerant of and/or more vulnerable to attacks from aggressive mimics when the net benefit of interacting with their models is high. Changes in environmental conditions that cause shifts in the net benefits accrued by models and signal receivers may have important implications for the persistence of aggressive mimicry systems.
拟态物种已经进化到与其他物种相似,以避免被捕食(保护性拟态)或获取食物(攻击性拟态)。拟态系统通常是三方相互作用,涉及拟态者、被模拟者和“信号接收者”。例如,由于环境条件的变化,被模拟者与信号接收者之间关系强度的改变会影响保护性拟态系统中拟态者的成功几率。在此,我们表明,实验诱导的被模拟者(蓝带清洁鱼,裂唇鱼)与信号接收者(鹿角雀鲷,库拉索钝塘鳢)之间关系强度的转变,导致攻击性拟态者(蓝带裂唇鱼,尖吻鲈)的觅食成功率增加。当实验性地增加鹿角雀鲷宿主的寄生虫负荷时,蓝带裂唇鱼对雀鲷的攻击成功率也会增加。拟态成功率的提高似乎是由于被寄生的宿主放松了警惕,它们更急切地寻找清洁鱼,总体攻击性水平也较低。因此,当与被模拟者互动的净收益较高时,信号接收者可能对攻击性拟态者的攻击更宽容和/或更易受攻击。导致被模拟者和信号接收者所获净收益发生变化的环境条件改变,可能对攻击性拟态系统的持续存在具有重要影响。