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April 23, 2026Fishes0 citationsOpen Access

Genetic Analysis of Mixed Individuals Reveals Different Spawning Populations of the Tetrapturus pfluegeri (Longbill Spearfish) in the Western Atlantic Ocean

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SJSuhaila Karim Khalil JaserCPCaio Augusto PerazzaRDRodrigo Rodrigues Domingues

Key Points

  • The aim is to assess the genetic population structure of longbill spearfish in the western Atlantic Ocean.
  • Analyzed genetic variation using 12 nuclear microsatellite loci and mitochondrial DNA control region sequences.
  • Evaluated genetic diversity and differentiation across three sample collection sites.
  • Performed neutrality tests to investigate historical demographic patterns.
  • Identified three genetically differentiated clusters of longbill spearfish.
  • Observed moderate-to-high genetic diversity, with 6.73 alleles per locus and effective population size of 789.2.
  • Findings suggest historical demographic expansion, with significant neutrality test results along the Brazilian coast.

Abstract

Populations of several billfish species are declining due to overfishing and bycatch, and fundamental aspects of their biology and population dynamics remain poorly understood. We provide the first assessment of the population genetic structure of longbill spearfish (Tetrapturus pfluegeri) in the western Atlantic Ocean. We screened variation at 12 nuclear microsatellite loci (n = 144) and mitochondrial DNA control region sequences (mtCR, n = 177). Both marker types revealed three genetically differentiated clusters, with mean values for microsatellites showing differentiation of FST = 0.136 and DEST = 0.201, and for mtCR FST = 0.645. Microsatellite markers demonstrated moderate-to-high genetic diversity, with a mean allelic richness of 6.73 alleles per locus, moderate heterozygosities (Ho = 0.446, He = 0.604), and a positive inbreeding coefficient (FIS = 0.22) across the three sample collection sites. The overall estimated effective population size was 789.2 (95% CI: 246.7–∞). The mtCR exhibited 96 haplotypes, with high haplotype (0.989 ± 0.003) and nucleotide (0.025 ± 1.3%) diversities. We found higher mean relatedness within clusters than among them, supporting the interpretation of population subdivision and the Wahlund effect. Tajima’s D and Fu’s Fs were negative across all localities, with significant values observed along the Brazilian coast but not in the Caribbean Sea. These neutrality test results, together with low Harpending’s raggedness indices from DNA sequence mismatch distributions, are consistent with historical demographic expansion. Our findings establish a genetic baseline for fishery monitoring and management, contributing to the conservation of T. pfluegeri populations in the western Atlantic Ocean.

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Cite This Study

Jaser et al. (2026) studied this question.

synapsesocial.com/papers/69e9b89b85696592c86ebb38https://doi.org/10.3390/fishes11040253
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