首页> 外文期刊>Biological Journal of the Linnean Society >Regulation, constraints and benefits of colour plasticity in a mimicry system
【24h】

Regulation, constraints and benefits of colour plasticity in a mimicry system

机译:模拟系统中颜色可塑性的调节,约束和益处

获取原文
获取原文并翻译 | 示例
           

摘要

Rapid colour change is used in aggressive interactions, ontogenetic transitions, nuptial displays and to prevent detection and/or recognition from predators or prey. The underlying mechanisms, constraints and benefits of colour change are often unclear, but examining such factors offers insights into phenotypic plasticity. Here, we investigated the mechanisms behind how an aggressive reef fish mimic (bluestriped fangblenny Plagiotremus rhinorhynchos) changes colour rapidly (1-5 min) between mimetic and other colour forms. Black with one neon blue dorsal stripe (mimic), black with two neon blue stripes, brown, olive and orange forms differed in melanophore density. Fish skin biopsies were modulated in vitro by hormones, and smaller fangblennies changed coloration more rapidly than larger fish suggesting that the ability to change colour is diminished as fish get larger. Individuals may be limited by differences in pigment cell densities to change colour between extreme colour forms (black to orange); therefore, longer morphological changes may also occur or fangblennies may exhibit dimorphic populations. Behavioural observations suggest that small black and orange individuals were equally successful in attacking passing fish to feed on dermal tissue/scales, indicating that deceptive strategies used by each colour form may deliver equal fitness benefits. The present study demonstrates for the first time how fangblennies change colour and highlights that colour plasticity offers important adaptive advantage; however, physiological constraints should also be considered.
机译:快速的颜色变化用于侵蚀性相互作用,围粒体过渡,爆发显示器,并防止检测和/或识别捕食者或猎物。颜色变化的潜在机制,限制和益处通常不清楚,但检查这些因素提供了对表型可塑性的见解。在这里,我们调查了如何在模拟物和其他颜色形式之间快速(1-5分钟)的侵略性礁鱼如何改变颜色(Bluetriped Fangblenny Plagiotremus Rhinorhynchos)背后的机制。黑色与一个霓虹蓝色背部条纹(模仿),黑色与两个霓虹蓝色条纹,棕色,橄榄和橙色形式不同于丝瓜浓度。鱼皮活组织检查通过激素体外调节,并且较小的肢体更加迅速地改变着较大的鱼,表明如何将颜色变得更大,因为鱼变大。个体可能受到颜料细胞密度的差异的限制,以改变极端颜色形式(黑色至橙色)之间的颜色;因此,也可能发生较长的形态变化,或者牙线可能表现出二态群体。行为观察表明,小黑色和橙色个体在攻击过度鱼中同样成功地饲喂真皮组织/秤,表明每种颜色形式使用的欺骗性策略可以提供相同的健康效益。本研究首次展示了Fangblennies如何改变颜色和亮点颜色可塑性提供重要的自适应优势;但是,也应该考虑生理制约因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号