The evolution of coloration and opsins in tarantulas

Author:

Foley Saoirse12ORCID,Saranathan Vinodkumar1234ORCID,Piel William H.123ORCID

Affiliation:

1. Department of Biological Sciences, National University of Singapore, Singapore 117543, Republic of Singapore

2. Division of Science, Yale-NUS College, 10 College Avenue West, Singapore 138609, Republic of Singapore

3. Lee Kong Chian Natural History Museum, National University of Singapore, Singapore 117377, Republic of Singapore

4. NUS Nanoscience and Nanotechnology Initiative (NUSNNI-NanoCore), National University of Singapore, Singapore 117581, Republic of Singapore

Abstract

Tarantulas paradoxically exhibit a diverse palette of vivid coloration despite their crepuscular to nocturnal habits. The evolutionary origin and maintenance of these colours remains mysterious. In this study, we reconstructed the ancestral states of both blue and green coloration in tarantula setae, and tested how these colours correlate with presence of stridulation, urtication and arboreality. Green coloration has probably evolved at least eight times, and blue coloration is probably an ancestral condition that appears to be lost more frequently than gained. While our results indicate that neither colour correlates with the presence of stridulation or urtication, the evolution of green coloration appears to depend upon the presence of arboreality, suggesting that it ptobably originated for and functions in crypsis through substrate matching among leaves. We also constructed a network of opsin homologues across tarantula transcriptomes. Despite their crepuscular tendencies, tarantulas express a considerable diversity of opsin genes—a finding that contradicts current consensus that tarantulas have poor colour vision on the basis of low opsin diversity. Overall, our findings raise the possibility that blue coloration could have ultimately evolved via sexual selection and perhaps proximately be used in mate choice or predation avoidance due to possible sex differences in mate-searching.

Funder

Yale-NUS College

Singapore Minstry of Education

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference58 articles.

1. Structural Colors in Spiders

2. Blue reflectance in tarantulas is evolutionarily conserved despite nanostructural diversity

3. Daily activity patterns in the tarantula Aphonopelma chalcodes Chamberlin;Minch E;Bull. Br. Arachnol. Soc.,1978

4. Diurnal rhythm of activity in the arboreal tarantula Avicularia avicularia (L.)(Mygalomorphae: Theraphosidae);Cloudsley-Thompson J;Biol. Rhythm Res.,1985

5. Tarantula phylogenomics: A robust phylogeny of deep theraphosid clades inferred from transcriptome data sheds light on the prickly issue of urticating setae evolution

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