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Journal Article

Little evidence for Bergmann's rule body size clines in passerines along tropical elevational gradients

Benjamin G. Freeman
Journal of Biogeography · Vol. 44, Issue 3 · pp. 502-510 · 2017

Abstract

Aim To test whether intra‐ and interspecific patterns in body mass along elevational gradients follow Bergmann's rule for a subset of tropical montane passerines. Location Tropical elevational gradients in New Guinea, Borneo, Peru and Costa Rica. Methods I used linear regressions to assess intraspecific patterns in body mass along elevational gradients in common New Guinean passerines (2697 mist‐netted individuals of 21 species). I then evaluated interspecific patterns using two data sets. First, I investigated differences in body mass in species pairs of elevational replacements, closely related species with minimal overlap along elevational gradients (species pairs; New Guinea: n = 45, Borneo: n = 22, Peru: n = 58 and Costa Rica: n = 30). Second, I used a comparative phylogenetic approach to test whether species’ mid‐point elevations predicted their masses within entire passerine avifaunas found along single elevational gradients (species; New Guinea: n = 184, Peru: n = 529 and Costa Rica: n = 220). Results New Guinean passerines exhibited minimal intraspecific variation in mass along elevational gradients. In two species, lower elevation individuals had significantly larger masses than upper elevation conspecifics. In species pairs of elevational replacements, there was no trend for upper elevation species to have larger masses than lower elevation species. Overall, species pairs tended to have positive mass disparities (mass of upper elevation species/mass of lower elevation species). However, contrary to predictions of Bergmann's rule, mass disparity was unrelated to elevational overlap. When considering entire passerine avifaunas along single elevational gradients, species’ masses were uncorrelated with their mid‐point elevational distributions. Main conclusions I found little evidence that tropical montane passerines have larger body masses at higher elevations where temperatures are colder. This lack of pattern was consistent across evolutionarily independent avifaunas of different biogeographical regions. These results suggest mean temperature is not a generally important driver of body size evolution in tropical montane passerines.

Bibliographic Information

JournalJournal of Biogeography
PublisherWiley
Publication Date2017-03-01
Publication Year2017
Volume44
Issue3
Pages502-510
Document TypeJournal Article
Print ISSN0305-0270
eISSN1365-2699
DOI10.1111/jbi.12812
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652699
Publisher PageOpen Publisher Page
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