Allometry of sexual size dimorphism in turtles: a comparison of mass and length data

Background The macroevolutionary pattern of Rensch’s Rule (positive allometry of sexual size dimorphism) has had mixed support in turtles. Using the largest carapace length dataset and only large-scale body mass dataset assembled for this group, we determine (a) whether turtles conform to Rensch’s R...

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Main Authors: Koy W. Regis, Jesse M. Meik
Format: Article
Language:English
Published: PeerJ Inc. 2017-01-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/2914.pdf
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author Koy W. Regis
Jesse M. Meik
author_facet Koy W. Regis
Jesse M. Meik
author_sort Koy W. Regis
collection DOAJ
description Background The macroevolutionary pattern of Rensch’s Rule (positive allometry of sexual size dimorphism) has had mixed support in turtles. Using the largest carapace length dataset and only large-scale body mass dataset assembled for this group, we determine (a) whether turtles conform to Rensch’s Rule at the order, suborder, and family levels, and (b) whether inferences regarding allometry of sexual size dimorphism differ based on choice of body size metric used for analyses. Methods We compiled databases of mean body mass and carapace length for males and females for as many populations and species of turtles as possible. We then determined scaling relationships between males and females for average body mass and straight carapace length using traditional and phylogenetic comparative methods. We also used regression analyses to evalutate sex-specific differences in the variance explained by carapace length on body mass. Results Using traditional (non-phylogenetic) analyses, body mass supports Rensch’s Rule, whereas straight carapace length supports isometry. Using phylogenetic independent contrasts, both body mass and straight carapace length support Rensch’s Rule with strong congruence between metrics. At the family level, support for Rensch’s Rule is more frequent when mass is used and in phylogenetic comparative analyses. Turtles do not differ in slopes of sex-specific mass-to-length regressions and more variance in body size within each sex is explained by mass than by carapace length. Discussion Turtles display Rensch’s Rule overall and within families of Cryptodires, but not within Pleurodire families. Mass and length are strongly congruent with respect to Rensch’s Rule across turtles, and discrepancies are observed mostly at the family level (the level where Rensch’s Rule is most often evaluated). At macroevolutionary scales, the purported advantages of length measurements over weight are not supported in turtles.
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spelling doaj.art-f8edbdbca2fa4497bc4c1230b0004a812023-12-03T01:20:34ZengPeerJ Inc.PeerJ2167-83592017-01-015e291410.7717/peerj.2914Allometry of sexual size dimorphism in turtles: a comparison of mass and length dataKoy W. Regis0Jesse M. Meik1Department of Biological Sciences, Tarleton State University, Stephenville, TX, United StatesDepartment of Biological Sciences, Tarleton State University, Stephenville, TX, United StatesBackground The macroevolutionary pattern of Rensch’s Rule (positive allometry of sexual size dimorphism) has had mixed support in turtles. Using the largest carapace length dataset and only large-scale body mass dataset assembled for this group, we determine (a) whether turtles conform to Rensch’s Rule at the order, suborder, and family levels, and (b) whether inferences regarding allometry of sexual size dimorphism differ based on choice of body size metric used for analyses. Methods We compiled databases of mean body mass and carapace length for males and females for as many populations and species of turtles as possible. We then determined scaling relationships between males and females for average body mass and straight carapace length using traditional and phylogenetic comparative methods. We also used regression analyses to evalutate sex-specific differences in the variance explained by carapace length on body mass. Results Using traditional (non-phylogenetic) analyses, body mass supports Rensch’s Rule, whereas straight carapace length supports isometry. Using phylogenetic independent contrasts, both body mass and straight carapace length support Rensch’s Rule with strong congruence between metrics. At the family level, support for Rensch’s Rule is more frequent when mass is used and in phylogenetic comparative analyses. Turtles do not differ in slopes of sex-specific mass-to-length regressions and more variance in body size within each sex is explained by mass than by carapace length. Discussion Turtles display Rensch’s Rule overall and within families of Cryptodires, but not within Pleurodire families. Mass and length are strongly congruent with respect to Rensch’s Rule across turtles, and discrepancies are observed mostly at the family level (the level where Rensch’s Rule is most often evaluated). At macroevolutionary scales, the purported advantages of length measurements over weight are not supported in turtles.https://peerj.com/articles/2914.pdfBody sizeBody massCarapace lengthMacroecologyRensch’s ruleReptiles
spellingShingle Koy W. Regis
Jesse M. Meik
Allometry of sexual size dimorphism in turtles: a comparison of mass and length data
PeerJ
Body size
Body mass
Carapace length
Macroecology
Rensch’s rule
Reptiles
title Allometry of sexual size dimorphism in turtles: a comparison of mass and length data
title_full Allometry of sexual size dimorphism in turtles: a comparison of mass and length data
title_fullStr Allometry of sexual size dimorphism in turtles: a comparison of mass and length data
title_full_unstemmed Allometry of sexual size dimorphism in turtles: a comparison of mass and length data
title_short Allometry of sexual size dimorphism in turtles: a comparison of mass and length data
title_sort allometry of sexual size dimorphism in turtles a comparison of mass and length data
topic Body size
Body mass
Carapace length
Macroecology
Rensch’s rule
Reptiles
url https://peerj.com/articles/2914.pdf
work_keys_str_mv AT koywregis allometryofsexualsizedimorphisminturtlesacomparisonofmassandlengthdata
AT jessemmeik allometryofsexualsizedimorphisminturtlesacomparisonofmassandlengthdata