Abstract
AbstractAcross Annelida, accessing the water column drives morphological and lifestyle modifications—yet in the primarily “benthic” scale worms, the ecological significance of swimming has largely been ignored. We investigated genetic, morphological and behavioural adaptations associated with swimming across Polynoidae, using mitogenomics and comparative methods. Mitochondrial genomes from cave and pelagic polynoids were highly similar, with non-significant rearrangements only present in cave Gesiella. Gene orders of the new mitogenomes were highly similar to shallow water species, suggestive of an underlying polynoid ground pattern. Being the first phylogenetic analyses to include the holopelagic Drieschia, we recovered this species nested among shallow water terminals, suggesting a shallow water ancestry. Based on these results, our phylogenetic reconstructions showed that swimming evolved independently three times in Polynoidae, involving convergent adaptations in morphology and motility patterns across the deep sea (Branchipolynoe), midwater (Drieschia) and anchialine caves (Pelagomacellicephala and Gesiella). Phylogenetic generalized least-squares (PGLS) analyses showed that holopelagic and anchialine cave species exhibit hypertrophy of the dorsal cirri, yet, these morphological modifications are achieved along different evolutionary pathways, i.e., elongation of the cirrophore versus style. Together, these findings suggest that a water column lifestyle elicits similar morphological adaptations, favouring bodies designed for drifting and sensing.
Funder
Global Genome Initiative – Rolling Awards Program
Peter Buck Fellowship Program
Marie Skolodowska-Curie Individual Grant
Publisher
Springer Science and Business Media LLC
Reference94 articles.
1. Støp-Bowitz, C. Polychaeta from the ‘Michael Sars’ North Atlantic deep-sea expedition 1910. Rep. Sci. Results Michael Sars N. Atl. Deep-Sea Exped. 5, 1–91 (1948).
2. Dales, R. P. & Peter, G. A synopsis of the pelagic Polychaeta. J. Nat. Hist. 6, 55–92 (1972).
3. San Martín, G. et al. New symbiotic association in marine annelids: Ectoparasites of comb jellies. Zool. J. Linn. Soc. 191, 672–694 (2021).
4. Hamner, W. M., Madin, L. P., Alldredge, A. L., Gilmer, R. W. & Hamner, P. P. Underwater observations of gelatinous zooplankton: Sampling problems, feeding biology, and behavior. Limnol. Oceanogr. 20, 907–917 (1975).
5. Rice, S. A. & Eckelbarger, K. J. An ultrastructural investigation of spermatogenesis in the holopelagic polychaetes Vanadis formosa and Krohnia lepidota (Polychaeta: Alciopidae). Biol. Bull. 176, 123–134 (1989).
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