Literature DB >> 22513278

Biology, not environment, drives major patterns in maximum tetrapod body size through time.

Roland B Sookias1, Roger B J Benson, Richard J Butler.   

Abstract

Abiotic and biological factors have been hypothesized as controlling maximum body size of tetrapods and other animals through geological time. We analyse the effects of three abiotic factors--oxygen, temperature and land area--on maximum size of Permian-Jurassic archosauromorphs and therapsids, and Cenozoic mammals, using time series generalized least-squares regression models. We also examine maximum size growth curves for the Permian-Jurassic data by comparing fits of Gompertz and logistic models. When serial correlation is removed, we find no robust correlations, indicating that these environmental factors did not consistently control tetrapod maximum size. Gompertz models--i.e. exponentially decreasing rate of size increase at larger sizes--fit maximum size curves far better than logistic models. This suggests that biological limits such as reduced fecundity and niche space availability become increasingly limiting as larger sizes are reached. Environmental factors analysed may still have imposed an upper limit on tetrapod body size, but any environmentally imposed limit did not vary substantially during the intervals examined despite variation in these environmental factors.

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Year:  2012        PMID: 22513278      PMCID: PMC3391459          DOI: 10.1098/rsbl.2012.0060

Source DB:  PubMed          Journal:  Biol Lett        ISSN: 1744-9561            Impact factor:   3.703


  16 in total

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2.  The rise of oxygen over the past 205 million years and the evolution of large placental mammals.

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3.  Ecology. Physiology and climate change.

Authors:  Hans O Pörtner; Anthony P Farrell
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4.  Unidirectional airflow in the lungs of alligators.

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Review 6.  Atmospheric oxygen level and the evolution of insect body size.

Authors:  Jon F Harrison; Alexander Kaiser; John M VandenBrooks
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Authors:  Roland B Sookias; Richard J Butler; Roger B J Benson
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  13 in total

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2.  Patterns of maximum body size evolution in Cenozoic land mammals: eco-evolutionary processes and abiotic forcing.

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8.  Body size reductions in nonmammalian eutheriodont therapsids (Synapsida) during the end-Permian mass extinction.

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Journal:  R Soc Open Sci       Date:  2016-07-13       Impact factor: 2.963

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