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Author Herman L Mays, David A Oehler, Kyle W Morrison, Ariadna E Morales, Alyssa Lycans, Justin Perdue, Phil F Battley, Yves Cherel, B Louise Chilvers, Sarah Crofts, Laurent Demongin, W Roger Fry, Jo Hiscock, Alejandro Kusch, Manuel Marin, Maud Poisbleau, Petra Quillfeldt, Andrea Raya Rey, Antje Steinfurth, David R Thompson, Leonard A Weakley doi  openurl
  Title Phylogeography, Population Structure, and Species Delimitation in Rockhopper Penguins (Eudyptes chrysocome and Eudyptes moseleyi) Type Journal
  Year (down) 2019 Publication Journal of Heredity Abbreviated Journal  
  Volume 110 Issue 7 Pages 801-817  
  Keywords  
  Abstract Rockhopper penguins are delimited as 2 species, the northern rockhopper (Eudyptes moseleyi) and the southern rockhopper (Eudyptes chrysocome), with the latter comprising 2 subspecies, the western rockhopper (Eudyptes chrysocome chrysocome) and the eastern rockhopper (Eudyptes chrysocome filholi). We conducted a phylogeographic study using multilocus data from 114 individuals sampled across 12 colonies from the entire range of the northern/southern rockhopper complex to assess potential population structure, gene flow, and species limits. Bayesian and likelihood methods with nuclear and mitochondrial DNA, including model testing and heuristic approaches, support E. moseleyi and E. chrysocome as distinct species lineages with a divergence time of 0.97 Ma. However, these analyses also indicated the presence of gene flow between these species. Among southern rockhopper subspecies, we found evidence of significant gene flow and heuristic approaches to species delimitation based on the genealogical diversity index failed to delimit them as species. The best-supported population models for the southern rockhoppers were those where E. c. chrysocome and E. c. filholi were combined into a single lineage or 2 lineages with bidirectional gene flow. Additionally, we found that E. c. filholi has the highest effective population size while E. c. chrysocome showed similar effective population size to that of the endangered E. moseleyi. We suggest that the current taxonomic definitions within rockhopper penguins be upheld and that E. chrysocome populations, all found south of the subtropical front, should be treated as a single taxon with distinct management units for E. c. chrysocome and E. c. filholi.  
  Programme 109  
  Campaign  
  Address  
  Corporate Author Thesis  
  Publisher Place of Publication Editor  
  Language Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 0022-1503 ISBN Medium  
  Area Expedition Conference  
  Notes Approved yes  
  Call Number Serial 8213  
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