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Journal Article

Low levels of genetic differentiation characterize Australian humpback whale ( Megaptera novaeangliae ) populations

Natalie T. Schmitt; Michael C. Double; Simon N. Jarman; Nick Gales; James R. Marthick; Andrea M. Polanowski; C. Scott Baker; Debbie Steel; K. Curt S. Jenner; Micheline‐N. M. Jenner; Rosemary Gales; David Paton; Rod Peakall
Marine Mammal Science · Vol. 30, Issue 1 · pp. 221-241 · 2014

Abstract

Humpback whales undertake long‐distance seasonal migrations between low latitude winter breeding grounds and high latitude summer feeding grounds. We report the first in‐depth population genetic study of the humpback whales that migrate to separate winter breeding grounds along the northwestern and northeastern coasts of Australia, but overlap on summer feeding grounds around Antarctica. Weak but significant differentiation between eastern and western Australia was detected across ten microsatellite loci ( F ST = 0.005, P = 0.001; D EST = 0.031, P = 0.001, n = 364) and mitochondrial control region sequences ( F ST = 0.017 and Φ ST = 0.069, P = 0.001, n = 364). Bayesian clustering analyses using microsatellite data could not resolve any population structure unless sampling location was provided as a prior. This study supports the emerging evidence that weak genetic differentiation is characteristic among neighboring Southern Hemisphere humpback whale breeding populations. This may be a consequence of relatively high gene flow facilitated by overlapping summer feeding areas in Antarctic waters.

Bibliographic Information

JournalMarine Mammal Science
PublisherWiley
Publication Date2014-01-01
Publication Year2014
Volume30
Issue1
Pages221-241
Document TypeJournal Article
Print ISSN0824-0469
eISSN1748-7692
DOI10.1111/mms.12045
SubjectMarine Biology

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/17487692
Publisher PageOpen Publisher Page
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