Viviparity is associated with larger female size and higher sexual size dimorphism in a reproductively bimodal lizard

Author:

Roitberg Evgeny S.1ORCID,Recknagel Hans2ORCID,Elmer Kathryn R.2ORCID,Braña Florentino3,Rodríguez Díaz Tania3,Žagar Anamarija4ORCID,Kuranova Valentina N.5ORCID,Epova Lidiya A.6,Bauwens Dirk7ORCID,Giovine Giovanni8,Orlova Valentina F.9,Bulakhova Nina A.10ORCID,Eplanova Galina V.11,Arribas Oscar J.12ORCID

Affiliation:

1. Leibniz Institute for the Analysis of Biodiversity Change, Museum Koenig Bonn Germany

2. Institute of Biodiversity, Animal Health and Comparative Medicine University of Glasgow Glasgow UK

3. Departamento de Biología de Organismos y Sistemas Universidad de Oviedo Oviedo Spain

4. Department of Organisms and Ecosystems Research National Institute of Biology Ljubljana Slovenia

5. Department of Vertebrate Zoology Tomsk State University Tomsk Russia

6. Western Baikal Protected Areas Irkutsk Russia

7. Department of Biology, Laboratory of Functional Morphology University of Antwerp Wilrijk Belgium

8. Stazione Sperimentale Regionale per Lo Studio e la Conservazione Degli Anfibi in Lombardia—Lago di Endine Lovere Italy

9. Zoological Museum Lomonosov Moscow State University Moscow Russia

10. Institute of Biological Problems of the North Magadan Russia

11. Institute of Ecology of the Volga River Basin Togliatti Russia

12. IES Castilla Junta de Castilla Soria Spain

Abstract

Abstract Squamate reptiles are central for studying phenotypic correlates of evolutionary transitions from oviparity to viviparity because these transitions are numerous, with many of them being recent. Several models of life‐history theory predict that viviparity is associated with increased female size, and thus more female‐biased sexual size dimorphism (SSD). Yet, the corresponding empirical evidence is overall weak and inconsistent. The lizard Zootoca vivipara, which occupies a major part of Northern Eurasia and includes four viviparous and two non‐sister oviparous lineages, represents an excellent model for testing these predictions. We analysed how sex‐specific body size and SSD is associated with parity mode, using body length data for nearly 14,000 adult individuals from 97 geographically distinct populations, which cover almost the entire species' range and represent all six lineages. Our analyses controlled for lineage identity, climatic seasonality (the strongest predictor of geographic body size variation in previous studies of this species) and several aspects of data heterogeneity. Parity mode, lineage and seasonality are significantly associated with female size and SSD; the first two predictors accounted for 14%–26% of the total variation each, while seasonality explained 5%–7%. Viviparous populations exhibited a larger female size than oviparous populations, with no concomitant differences in male size. The variation of male size was overall low and poorly explained by our predictors. Albeit fully expected from theory, the strong female bias of the body size differences between oviparous and viviparous populations found in Z. vivipara is not evident from available data on three other lizard systems of closely related lineages differing in parity mode. We confront this pattern with the data on female reproductive traits in the considered systems and the frequencies of evolutionary changes of parity mode in the corresponding lizard families and speculate why the life‐history correlates of live‐bearing in Z. vivipara are distinct. Comparing conspecific populations, our study provides the most direct evidence for the predicted effect of parity mode on adult body size but also demonstrates that the revealed pattern may not be general. This might explain why across squamates, viviparity is only weakly associated with larger size.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

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