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River dolphins and flooded forest: seasonal habitat use and sexual segregation of botos (Inia geoffrensis) in an extreme cetacean environment

Martin, A.R.; da Silva, V.M.F.. 2004 River dolphins and flooded forest: seasonal habitat use and sexual segregation of botos (Inia geoffrensis) in an extreme cetacean environment. Journal of Zoology, 263 (3). 295-305. 10.1017/S095283690400528X

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Abstract/Summary

Habitat use by the boto, or Amazon river dolphin Inia geoffrensis, was investigated in and around the Mamiraua Reserve, Brazil. Largely forested with numerous channels and lakes, Mamiraua comprises a variety of seasonal floodplain habitats known collectively as varzea. The annual cycle of flooding in this region (amplitude 11-15 m) dominates all life. Profound seasonal differences in dolphin density between habitats were consistent with known fish movements, in turn dictated by changes in water level and dissolved oxygen. An exodus of botos from floodplain to river at low water prevents dolphins being trapped in areas that become entirely dry. Densities of botos in floodplain channels were seasonally higher (up to 18 km(-2)) than reported for any cetacean worldwide. Adults were largely segregated by sex except at low water. Females and calves dominated in chavascal habitat the areas most remote from rivers, which were preferred by mates. Probable causes of this segregation are the energetic requirements of calves and the safety of females and/or calves from male harassment. Some 80% of botos occurring on rivers were within 150 m of the margins. The reliance of adult females and calves on varzea in a region with exceptional dolphin densities demonstrates the importance of floodplain habitats for the boto, and may be the key determinant of this species' distribution.

Item Type: Publication - Article
Digital Object Identifier (DOI): 10.1017/S095283690400528X
Programmes: BAS Programmes > Other Special Projects
ISSN: 0952-8369
NORA Subject Terms: Zoology
Ecology and Environment
Date made live: 20 Jan 2012 13:20
URI: http://nora.nerc.ac.uk/id/eprint/12275

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