Biology Department, Duke University, Durham, NC, USA.
Integr Comp Biol. 2019 Dec 1;59(6):1653-1663. doi: 10.1093/icb/icz066.
The "superpower" of invisibility is a reality and a necessity for many animals that live in featureless environments like the open ocean, where there is nowhere to hide. How do animals achieve invisibility? Many animals match their color patterns to their background, but this strategy is limited when the background scene is dynamic. Transparency allows organisms to match any background all the time. However, it is challenging for an organism to maintain transparency across its entire body volume. To be transparent, tissues must minimize light scattering, both at the surface and within. Until recently, it has been unclear how clear animals with complex bodies (such as many crustaceans with hard cuticles, thick muscles, and other internal organs) minimize such light scattering. This is especially challenging in an environment where light can come from many directions: reflections from downwelling sunlight and bioluminescent searchlights from predators. This review summarizes several recent discoveries of multiple unique adaptations for minimizing light scattering both on the exterior cuticle surface and throughout the body volume of transparent crustaceans, as well as the potential tradeoffs and challenges associated with transparent camouflage.
隐形的“超能力”是许多生活在无特征环境(如开阔海洋)中的动物的现实需求,因为在这些环境中无处可藏。动物如何实现隐形?许多动物会将自身颜色图案与背景相匹配,但当背景场景是动态的时候,这种策略就受到限制。透明度使生物体能够始终与任何背景相匹配。然而,对于生物体来说,要在整个身体体积上保持透明度是具有挑战性的。为了实现透明,组织必须最大限度地减少表面和内部的光散射。直到最近,人们还不清楚具有复杂身体的透明动物(如许多具有硬壳、厚肌肉和其他内部器官的甲壳类动物)如何最大限度地减少这种光散射。在一个光线可以从多个方向照射的环境中,这尤其具有挑战性:来自下降阳光的反射和来自捕食者的生物发光探照灯。这篇综述总结了最近的几项发现,这些发现揭示了透明甲壳类动物在外部甲壳表面和整个身体体积上都有多种独特的减少光散射的适应性,以及与透明伪装相关的潜在权衡和挑战。