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Relaxation of purifying selection suggests low effective population size in eusocial Hymenoptera and solitary pollinating beesuse asterix (*) to get italics
Arthur Weyna, Jonathan RomiguierPlease use the format "First name initials family name" as in "Marie S. Curie, Niels H. D. Bohr, Albert Einstein, John R. R. Tolkien, Donna T. Strickland"
2021
<p>With one of the highest number of parasitic, eusocial and pollinator species among all insect orders, Hymenoptera features a great diversity of lifestyles. At the population genetic level, such life-history strategies are expected to decrease effective population size and the efficiency of purifying selection. In this study, we tested this hypothesis by estimating the relative rate of non-synonymous substitution in 169 species to investigate the variation in natural selection efficiency throughout the hymenopteran tree of life. We found no effect of parasitism, but we show that relaxed selection is associated with eusociality, suggesting that the division of reproductive labour decreases effective population size in ants, bees and wasps. Unexpectedly, the effect of eusociality is marginal compared to a striking and widespread relaxation of selection in both social and non social bees, which indicates that these keystone pollinator species generally feature low effective population sizes. This widespread pattern suggests specific constraints in pollinating bees potentially linked to limited resource availability and high parental investment. The particularly high load of deleterious mutations we report in the genome of these crucial ecosystem engineer species also raises new concerns about their ongoing population decline.</p>
http://dx.doi.org/10.17632/trbj94zm2n.2You should fill this box only if you chose 'All or part of the results presented in this preprint are based on data'. URL must start with http:// or https://
https://zenodo.org/record/3999857#.X0UsBBk6-itYou should fill this box only if you chose 'Scripts were used to obtain or analyze the results'. URL must start with http:// or https://
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Eusociality ; Population genomics ; Natural selection ; Pollinating bees
NonePlease indicate the methods that may require specialised expertise during the peer review process (use a comma to separate various required expertises).
Behavior & Social Evolution, Genome Evolution, Life History, Molecular Evolution, Population Genetics / Genomics
No need for them to be recommenders of PCIEvolBiol. Please do not suggest reviewers for whom there might be a conflict of interest. Reviewers are not allowed to review preprints written by close colleagues (with whom they have published in the last four years, with whom they have received joint funding in the last four years, or with whom they are currently writing a manuscript, or submitting a grant proposal), or by family members, friends, or anyone for whom bias might affect the nature of the review - see the code of conduct
e.g. John Doe [john@doe.com]
2020-04-21 17:30:57
Bertanne Visser