The benefits of grouping as a main driver of social evolution in a halictine bee.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 30306126.
- Also identified by DOI 10.1126/sciadv.1700741 and PMC identifier 6170040.
- Licence recorded as CC BY-NC.
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Abstract
Over the past decade, the cause of sociality has been much debated. Inclusive fitness [<b>br</b> in Hamilton's rule (<b>br</b> - <b>c</b> > 0)] has been criticized but is still useful in the organization of a framework by elucidating mechanisms through which <b>br</b> (benefit × relatedness) becomes larger than <b>c</b> (cost). The bee <i>Lasioglossum baleicum</i> is suitable for investigation of this issue because of the sympatric occurrence of both social and solitary nesting in its populations. We show that a large part (approximately 92%) of the inclusive fitness of a eusocial worker can be attributed to the benefits of grouping. A 1.5-fold relatedness asymmetry benefit in singly mated haplo-diploids explains a small part (approximately 8.5%) of the observed inclusive fitness. Sociality enables this species to conduct foraging and nest defense simultaneously, which is not the case in solitary nests. Our results indicate that this benefit of grouping is the main source of the increased inclusive fitness of eusocial workers.
Medical subject headings
- Behavior, Animal
- Social Behavior