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Phylogeography of California and Galapagos sea lions and population structure within the California sea lion

Journal

MARINE BIOLOGY
Volume 156, Issue 7, Pages 1375-1387

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s00227-009-1178-1

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Funding

  1. Mexican National Science Foundation (CONACyT)
  2. Alstom Power (Rosarito, Mexico)
  3. Universidad Autonoma de Baja California
  4. US Office of Naval Research [N00014-05-1-0045]
  5. National Oceanographic Partnership Program

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We investigate the phylogeography of California (Zalophus californianus) and Galapagos (Z. wollebaeki) sea lions and describe within-population structure for the California sea lion based on mitochondrial DNA. Fifty control-region haplotypes were found, 41 from Z. californianus and 9 from Z. wollebaeki, with three fixed differences between the two species. Ranked population boundaries along the range of Z. californianus were defined based on the Monmonier Maximum Difference Algorithm, resulting in five genetically distinct populations, two in the Pacific Ocean and three inside the Gulf of California. A Minimum Spanning Network showed a strong phylogeographic signal with two well-defined clusters, Z. californianus and Z. wollebaeki, separated by six base-pair differences, supporting the existence of two genetically distinct species with an estimated divergence time of similar to 0.8 Ma. Results are discussed in the context of the historical geologic and paleoceanographic events of the last 1 Ma in the eastern Pacific.

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