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Novel insights on aquatic mammal MHC evolution: Evidence from manatee DQB diversity

Authors :
André Luiz Alves de Sá
Pamela Ketrya Barreiros Baker
Breanna Breaux
Jairo Moura Oliveira
Alex Garcia Cavalleiro de Macedo Klautau
Kristian Legatzki
Fábia de Oliveira Luna
Fernanda Löffler Niemeyer Attademo
Margaret Elizabeth Hunter
Michael Frederick Criscitiello
Maria Paula Cruz Schneider
Leonardo dos Santos Sena
Source :
Developmental and comparative immunology. 132
Publication Year :
2021

Abstract

The low diversity in marine mammal major histocompatibility complex (MHC) appears to support the hypothesis of reduced pathogen selective pressure in aquatic systems compared to terrestrial environments. However, the lack of characterization of the aquatic and evolutionarily distant Sirenia precludes drawing more generalized conclusions. Therefore, we aimed to characterize the MHC DQB diversity of two manatee species and compare it with those reported for marine mammals. Our results identified 12 and 6 alleles in T. inunguis and T. manatus, respectively. Alleles show high rates of nonsynonymous substitutions, suggesting loci are evolving under positive selection. Among aquatic mammals, Pinnipeda DQB had smaller numbers of alleles, higher synonymous substitution rate, and a dN/dS ratio closer to 1, suggesting it may be evolving under more relaxed selection compared to fully aquatic mammals. This contradicts one of the predictions of the hypothesis that aquatic environments impose reduced pathogen pressure to mammalian immune system. These results suggest that the unique evolutionary trajectories of mammalian MHC may impose challenges in drawing ecoevolutionary conclusions from comparisons across distant vertebrate lineages.

Details

ISSN :
18790089
Volume :
132
Database :
OpenAIRE
Journal :
Developmental and comparative immunology
Accession number :
edsair.doi.dedup.....559c5b0b0c47e98202366cf304c33319