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Seasonal migration of marsupial megafauna in Pleistocene Sahul (Australia-New Guinea).


ABSTRACT: Seasonal two-way migration is an ecological phenomenon observed in a wide range of large-bodied placental mammals, but is conspicuously absent in all modern marsupials. Most extant marsupials are typically smaller in body size in comparison to their migratory placental cousins, possibly limiting their potential to undertake long-distance seasonal migrations. But what about earlier, now-extinct giant marsupial megafauna? Here we present new geochemical analyses which show that the largest of the extinct marsupial herbivores, the enormous wombat-like Diprotodon optatum, undertook seasonal, two-way latitudinal migration in eastern Sahul (Pleistocene Australia-New Guinea). Our data infer that this giant marsupial had the potential to perform round-trip journeys of as much as 200 km annually, which is reminiscent of modern East African mammal migrations. These findings provide, to our knowledge, the first evidence for repetitive seasonal migration in any metatherian (including marsupials), living or extinct, and point to an ecological phenomenon absent from the continent since the Late Pleistocene.

SUBMITTER: Price GJ 

PROVIDER: S-EPMC5627191 | biostudies-literature | 2017 Sep

REPOSITORIES: biostudies-literature

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Seasonal migration of marsupial megafauna in Pleistocene Sahul (Australia-New Guinea).

Price Gilbert J GJ   Ferguson Kyle J KJ   Webb Gregory E GE   Feng Yue-Xing YX   Higgins Pennilyn P   Nguyen Ai Duc AD   Zhao Jian-Xin JX   Joannes-Boyau Renaud R   Louys Julien J  

Proceedings. Biological sciences 20170901 1863


Seasonal two-way migration is an ecological phenomenon observed in a wide range of large-bodied placental mammals, but is conspicuously absent in all modern marsupials. Most extant marsupials are typically smaller in body size in comparison to their migratory placental cousins, possibly limiting their potential to undertake long-distance seasonal migrations. But what about earlier, now-extinct giant marsupial megafauna? Here we present new geochemical analyses which show that the largest of the  ...[more]

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