Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.
J Exp Biol. 2013 Jul 1;216(Pt 13):2403-11. doi: 10.1242/jeb.082255.
The balance between the costs and benefits of conspicuous animal communication signals ensures that signal expression relates to the quality of the bearer. Signal plasticity enables males to enhance conspicuous signals to impress mates and competitors and to reduce signal expression to lower energetic and predation-related signaling costs when competition is low. While signal plasticity may benefit the signaler, it can compromise the reliability of the information conveyed by the signals. In this paper we review the effect of signal plasticity on the reliability of the electrocommunication signal of the gymnotiform fish Brachyhypopomus gauderio. We (1) summarize the endocrine regulation of signal plasticity, (2) explore the regulation of signal plasticity in females, (3) examine the information conveyed by the signal, (4) show how that information changes when the signal changes, and (5) consider the energetic strategies used to sustain expensive signaling. The electric organ discharge (EOD) of B. gauderio changes in response to social environment on two time scales. Two hormone classes, melanocortins and androgens, underlie the short-term and long-term modulation of signal amplitude and duration observed during social interaction. Population density drives signal amplitude enhancement, unexpectedly improving the reliability with which the signal predicts the signaler's size. The signal's second phase elongation predicts androgen levels and male reproductive condition. Males sustain signal enhancement with dietary intake, but when food is limited, they 'go for broke' and put extra energy into electric signals. Cortisol diminishes EOD parameters, but energy-limited males offset cortisol effects by boosting androgen levels. While physiological constraints are sufficient to maintain signal amplitude reliability, phenotypic integration and signaling costs maintain reliability of signal duration, consistent with theory of honest signaling.
动物信号的成本和收益之间的平衡确保了信号表达与载体的质量有关。信号可塑性使雄性能够增强显眼的信号,以打动配偶和竞争者,并在竞争较低时降低信号表达,以降低与能量和捕食相关的信号成本。虽然信号可塑性可能对信号发送者有利,但它可能会损害信号所传达信息的可靠性。在本文中,我们回顾了信号可塑性对电鱼 Brachyhypopomus gauderio 的电通信信号可靠性的影响。我们:(1)总结了信号可塑性的内分泌调节,(2)探索了雌性信号可塑性的调节,(3)研究了信号所传达的信息,(4)展示了信号变化时信息如何变化,以及(5)考虑了用于维持昂贵信号的能量策略。B. gauderio 的电器官放电 (EOD) 会根据社交环境在两个时间尺度上发生变化。两类激素,黑色素皮质素和雄激素,是在社交互动中观察到的信号幅度和持续时间的短期和长期调制的基础。种群密度驱动信号幅度增强,出人意料地提高了信号预测信号发送者大小的可靠性。信号的第二阶段延长预测雄激素水平和雄性生殖状况。雄性通过饮食摄入维持信号增强,但当食物有限时,它们会“全力以赴”,并将额外的能量投入到电信号中。皮质醇会降低 EOD 参数,但能量受限的雄性会通过提高雄激素水平来抵消皮质醇的影响。虽然生理限制足以维持信号幅度的可靠性,但表型整合和信号成本维持了信号持续时间的可靠性,这与诚实信号的理论一致。