Doucet Stéphanie M, Meadows Melissa G
Department of Biological Sciences, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
J R Soc Interface. 2009 Apr 6;6 Suppl 2(Suppl 2):S115-32. doi: 10.1098/rsif.2008.0395.focus.
In animals, iridescence is generated by the interaction of light with biological tissues that are nanostructured to produce thin films or diffraction gratings. Uniquely among animal visual signals, the study of iridescent coloration contributes to biological and physical sciences by enhancing our understanding of the evolution of communication strategies, and by providing insights into physical optics and inspiring biomimetic technologies useful to humans. Iridescent colours are found in a broad diversity of animal taxa ranging from diminutive marine copepods to terrestrial insects and birds. Iridescent coloration has received a surge of research interest of late, and studies have focused on both characterizing the nanostructures responsible for producing iridescence and identifying the behavioural functions of iridescent colours. In this paper, we begin with a brief description of colour production mechanisms in animals and provide a general overview of the taxonomic distribution of iridescent colours. We then highlight unique properties of iridescent signals and review the proposed functions of iridescent coloration, focusing, in particular, on the ways in which iridescent colours allow animals to communicate with conspecifics and avoid predators. We conclude with a brief overview of non-communicative functions of iridescence in animals. Despite the vast amount of recent work on animal iridescence, our review reveals that many proposed functions of iridescent coloration remain virtually unexplored, and this area is clearly ripe for future research.
在动物中,虹彩是由光与具有纳米结构以产生薄膜或衍射光栅的生物组织相互作用而产生的。在动物视觉信号中,虹彩着色的研究独一无二,它通过增进我们对通讯策略进化的理解,以及通过提供对物理光学的见解并启发对人类有用的仿生技术,为生物学和物理科学做出了贡献。虹彩颜色在从微小的海洋桡足类到陆生昆虫和鸟类等广泛多样的动物类群中都有发现。近来,虹彩着色受到了大量的研究关注,研究集中在表征产生虹彩的纳米结构以及确定虹彩颜色的行为功能上。在本文中,我们首先简要描述动物中的颜色产生机制,并对虹彩颜色的分类分布进行总体概述。然后,我们突出虹彩信号的独特属性,并回顾虹彩着色的假定功能,特别关注虹彩颜色使动物能够与同种个体交流并躲避捕食者的方式。我们最后简要概述动物中虹彩的非通讯功能。尽管最近有大量关于动物虹彩的研究工作,但我们的综述表明,虹彩着色的许多假定功能实际上仍未得到探索,这个领域显然是未来研究的成熟领域。