Published March 17, 2025 | Version v1
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Data from: Reduced fitness of females in a facultatively polygynous species: A 32-yr study of Savannah sparrows

  • 1. University of Guelph
  • 2. Bowdoin College
  • 3. University of Windsor
  • 4. Netherlands Institute of Ecology
  • 5. Environment and Climate Change Canada
  • 6. Government of Northwest Territories

Description

The evolution of mating systems reflects a balance of the often-conflicting interests of males and females. Polygyny, a mating system in which males have multiple mates, presents a fitness benefit to males, but the consequences for females are less clear. Females with polygynous social mates may suffer reduced fitness, especially secondary females who typically receive less male support. We use 32 years of detailed reproductive data on a population of Savannah sparrows (Passerculus sandwichensis) breeding on Kent Island, NB, Canada, to investigate the effects of females' social mating status on six indices of female fitness: survival, clutch size, fledging success, number of fledglings produced per nest and annually, and recruitment of offspring. Secondary females produced fewer fledglings per nest and annually than did monogamous or primary females, and their young were less likely to recruit into the breeding population. Yearling secondary females also had lower survival rates than older secondary females. Combined with higher rates of partial brood loss among secondary females, our results suggest that secondary females are unable to provide enough care to consistently fledge all nestlings in their broods, likely due to reduced male provisioning. Given that the sex ratio of breeders in the population is female-biased, we suggest that polygyny persists despite its fitness costs because some females must mate polygynously to "make the best of a bad situation." Our study demonstrates the value of detailed, long-term population monitoring data for understanding mating systems and using multiple indices of fitness to analyze the costs of polygyny.

Notes

Funding provided by: Natural Sciences and Engineering Research Council
ROR ID: https://ror.org/01h531d29
Award Number:

Funding provided by: National Science Foundation
ROR ID: https://ror.org/021nxhr62
Award Number:

Funding provided by: Canada Foundation for Innovation
ROR ID: https://ror.org/000az4664
Award Number:

Funding provided by: University of Guelph
ROR ID: https://ror.org/01r7awg59
Award Number:

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Related works

Is source of
10.5061/dryad.msbcc2g7d (DOI)