期刊论文详细信息
PeerJ
Evidence of phenotypic plasticity along an altitudinal gradient in the dung beetle Onthophagus proteus
article
Roisin A. Stanbrook1  W. Edwin Harris2  Charles P. Wheater3  Martin Jones3 
[1] Department of Biology, University of Central Florida;Crop and Environment Sciences, Harper Adams University;Department of Conservation and Ecology, The Manchester Metropolitan University
关键词: Polyphenism;    Trait variation;    Dung beetle;    Altitude;    Afromontane forest;   
DOI  :  10.7717/peerj.10798
学科分类:社会科学、人文和艺术(综合)
来源: Inra
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【 摘 要 】

BackgroundHigh altitude insects are an ecologically specialized group and possess a suite of adaptions which allow persistence in the inhospitable conditions often associated with mountain tops. Changes in body coloration and reductions or increases in body size are thought to be examples of such adaptions. Melanic individuals, or individuals containing high levels of eumelanin, possess several traits which increase resistance to ultraviolet radiation and desiccation, while aiding thermoregulation. Trait variation is often observed in dung beetles and is associated with dimorphism and sexual selection. In this study, we identified trait changes which occur across an altitudinal gradient by measuring morphological color and body size traits in a montane insect.MethodsUsing standard digital photography and Image J, we examined individuals of Afromontane dung beetle Onthophagus proteus. Individuals were classified according to sex and color morph to identify intrasexual variance. Nine morphometric traits were measured per beetle to identify patterns of morphology across discrete 500 m altitude segments.ResultsThe results of this study provide one of the first descriptions of trait changes associated with elevation in an African dung beetle. We suggest that color polymorphism in Onthophagus proteus might be at least partly driven by environmental factors as there is significantly increased melanism with increasing elevation and significant differences in color hues between altitude bands. We also suggest changes in horn length are density dependent, as we observed an increase in cephalic horn length at high elevations where O. proteus is the most abundant species.

【 授权许可】

CC BY   

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