Pervasive tandem duplications and convergent evolution shape coral genomes

Author:

Noel BenjaminORCID,Denoeud FranceORCID,Rouan AliceORCID,Buitrago-López CarolORCID,Capasso Laura,Poulain JulieORCID,Boissin EmilieORCID,Pousse Mélanie,Da Silva CorinneORCID,Couloux Arnaud,Armstrong EricORCID,Carradec QuentinORCID,Cruaud CorinneORCID,Labadie KarineORCID,Lê-Hoang Julie,Tambutté Sylvie,Barbe Valérie,Moulin ClémentineORCID,Bourdin Guillaume,Iwankow Guillaume,Romac Sarah,Agostini SylvainORCID,Banaigs BernardORCID,Boss EmmanuelORCID,Bowler ChrisORCID,de Vargas ColombanORCID,Douville EricORCID,Flores J. MichelORCID,Forcioli DidierORCID,Furla PaolaORCID,Galand Pierre E.ORCID,Lombard FabienORCID,Pesant StéphaneORCID,Reynaud StéphanieORCID,Sullivan Matthew B.ORCID,Sunagawa ShinichiORCID,Thomas Olivier P.ORCID,Troublé Romain,Thurber Rebecca VegaORCID,Allemand DenisORCID,Planes SergeORCID,Gilson EricORCID,Zoccola DidierORCID,Wincker PatrickORCID,Voolstra Christian R.ORCID,Aury Jean-MarcORCID

Abstract

Abstract Background Over the last decade, several coral genomes have been sequenced allowing a better understanding of these symbiotic organisms threatened by climate change. Scleractinian corals are reef builders and are central to coral reef ecosystems, providing habitat to a great diversity of species. Results In the frame of the Tara Pacific expedition, we assemble two coral genomes, Porites lobata and Pocillopora cf. effusa, with vastly improved contiguity that allows us to study the functional organization of these genomes. We annotate their gene catalog and report a relatively higher gene number than that found in other public coral genome sequences, 43,000 and 32,000 genes, respectively. This finding is explained by a high number of tandemly duplicated genes, accounting for almost a third of the predicted genes. We show that these duplicated genes originate from multiple and distinct duplication events throughout the coral lineage. They contribute to the amplification of gene families, mostly related to the immune system and disease resistance, which we suggest to be functionally linked to coral host resilience. Conclusions At large, we show the importance of duplicated genes to inform the biology of reef-building corals and provide novel avenues to understand and screen for differences in stress resilience.

Funder

Agence Nationale de la Recherche

Publisher

Springer Science and Business Media LLC

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