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Journal article

Structurally assisted super black in colourful peacock spiders

From

Harvard University1

University of Bonn2

Department of Health Technology, Technical University of Denmark3

Yale University4

Male peacock spiders ( Maratus, Salticidae) compete to attract female mates using elaborate, sexually selected displays. They evolved both brilliant colour and velvety black. Here, we use scanning electron microscopy, hyperspectral imaging and finite-difference time-domain optical modelling to investigate the deep black surfaces of peacock spiders.

We found that super black regions reflect less than 0.5% of light (for a 30° collection angle) in Maratus speciosus (0.44%) and Maratus karrie (0.35%) owing to microscale structures. Both species evolved unusually high, tightly packed cuticular bumps (microlens arrays), and M. karrie has an additional dense covering of black brush-like scales atop the cuticle.

Our optical models show that the radius and height of spider microlenses achieve a balance between (i) decreased surface reflectance and (ii) enhanced melanin absorption (through multiple scattering, diffraction out of the acceptance cone of female eyes and increased path length of light through absorbing melanin pigments).

The birds of paradise (Paradiseidae), ecological analogues of peacock spiders, also evolved super black near bright colour patches. Super black locally eliminates white specular highlights, reference points used to calibrate colour perception, making nearby colours appear brighter, even luminous, to vertebrates.

We propose that this pre-existing, qualitative sensory experience-'sensory bias'-is also found in spiders, leading to the convergent evolution of super black for mating displays in jumping spiders.

Language: English
Publisher: The Royal Society
Year: 2019
Pages: 20190589
ISSN: 14712954 and 09628452
Types: Journal article
DOI: 10.1098/rspb.2019.0589
ORCIDs: 0000-0001-8383-8084 , 0000-0002-5655-0381 , Mandsberg, Nikolaj Kofoed , 0000-0001-6064-5378 , 0000-0002-2343-8705 and 0000-0001-7377-1605

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