The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule

Abstract We evaluated the applicability of Rapoport’s Rule (RR) to the marine bony fishes of the world. The biogeographical pattern predicted by RR has been the subject of a large number of studies, some supporting it and some not. In this exercise, we attempted to generate results free of biases fr...

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Published in:Marine Ecology
Main Authors: Fortes, Rafael R., Absalão, Ricardo S.
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2010
Subjects:
Online Access:http://dx.doi.org/10.1111/j.1439-0485.2010.00357.x
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spelling crwiley:10.1111/j.1439-0485.2010.00357.x 2024-09-09T19:26:50+00:00 The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule Fortes, Rafael R. Absalão, Ricardo S. 2010 http://dx.doi.org/10.1111/j.1439-0485.2010.00357.x https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fj.1439-0485.2010.00357.x https://onlinelibrary.wiley.com/doi/pdf/10.1111/j.1439-0485.2010.00357.x en eng Wiley http://onlinelibrary.wiley.com/termsAndConditions#vor Marine Ecology volume 31, issue 3, page 483-493 ISSN 0173-9565 1439-0485 journal-article 2010 crwiley https://doi.org/10.1111/j.1439-0485.2010.00357.x 2024-08-09T04:24:04Z Abstract We evaluated the applicability of Rapoport’s Rule (RR) to the marine bony fishes of the world. The biogeographical pattern predicted by RR has been the subject of a large number of studies, some supporting it and some not. In this exercise, we attempted to generate results free of biases from taxonomy or geographic scale. The study area encompassed all world oceans. Our analysis was based on secondary data. We tested the relationship of the geographic range and the bathymetric range to the latitude gradient, using the method of Stevens ( American Naturalist 1989, 133 , 240–256) . We compared all known species of marine bony fishes together, and performed a second analysis limited to the non‐pelagic species. Our results were generated from a databank including 13,957 species. The results indicated that RR (latitudinal range) is valid for 11 regions. However, there were exceptions for the northern part of the Eastern Atlantic and Pacific, the northern part of the Western Indian, and the Arctic Oceans. The analyses of RR (bathymetric range) were supported for 13 regions. We found only one exception, for the northern part of the Western Indian Ocean. The applicability of RR and its relationship to energy supply, represented here by the temperature variability of the marine water masses, was clear. The exceptions appeared when some feature associated with the distribution of water masses was superposed on the latitudinal gradient, or when some life trait characteristic of a taxon, for instance body size, was confounded with the effect of climate variability. Article in Journal/Newspaper Arctic Wiley Online Library Arctic Indian Pacific Marine Ecology 31 3 483 493
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description Abstract We evaluated the applicability of Rapoport’s Rule (RR) to the marine bony fishes of the world. The biogeographical pattern predicted by RR has been the subject of a large number of studies, some supporting it and some not. In this exercise, we attempted to generate results free of biases from taxonomy or geographic scale. The study area encompassed all world oceans. Our analysis was based on secondary data. We tested the relationship of the geographic range and the bathymetric range to the latitude gradient, using the method of Stevens ( American Naturalist 1989, 133 , 240–256) . We compared all known species of marine bony fishes together, and performed a second analysis limited to the non‐pelagic species. Our results were generated from a databank including 13,957 species. The results indicated that RR (latitudinal range) is valid for 11 regions. However, there were exceptions for the northern part of the Eastern Atlantic and Pacific, the northern part of the Western Indian, and the Arctic Oceans. The analyses of RR (bathymetric range) were supported for 13 regions. We found only one exception, for the northern part of the Western Indian Ocean. The applicability of RR and its relationship to energy supply, represented here by the temperature variability of the marine water masses, was clear. The exceptions appeared when some feature associated with the distribution of water masses was superposed on the latitudinal gradient, or when some life trait characteristic of a taxon, for instance body size, was confounded with the effect of climate variability.
format Article in Journal/Newspaper
author Fortes, Rafael R.
Absalão, Ricardo S.
spellingShingle Fortes, Rafael R.
Absalão, Ricardo S.
The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule
author_facet Fortes, Rafael R.
Absalão, Ricardo S.
author_sort Fortes, Rafael R.
title The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule
title_short The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule
title_full The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule
title_fullStr The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule
title_full_unstemmed The latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of Rapoport′s Rule
title_sort latitudinal and bathymetric ranges of marine fishes: a global analysis to test the application of rapoport′s rule
publisher Wiley
publishDate 2010
url http://dx.doi.org/10.1111/j.1439-0485.2010.00357.x
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fj.1439-0485.2010.00357.x
https://onlinelibrary.wiley.com/doi/pdf/10.1111/j.1439-0485.2010.00357.x
geographic Arctic
Indian
Pacific
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op_source Marine Ecology
volume 31, issue 3, page 483-493
ISSN 0173-9565 1439-0485
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op_doi https://doi.org/10.1111/j.1439-0485.2010.00357.x
container_title Marine Ecology
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