Accelerated Evolution of Tissue-Specific Genes Mediates Divergence Amidst Gene Flow in European Green Lizards

Author:

Kolora Sree Rohit Raj1234ORCID,Gysi Deisy Morselli256,Schaffer Stefan13,Grimm-Seyfarth Annegret7,Szabolcs Márton8,Faria Rui9,Henle Klaus17,Stadler Peter F12101112,Schlegel Martin13,Nowick Katja13ORCID

Affiliation:

1. German Centre for Integrative Biodiversity Research (iDiv) Halle Jena Leipzig, Leipzig, Germany

2. Bioinformatics Group, Department of Computer Science, and Interdisciplinary Center for Bioinformatics, Universität Leipzig, Leipzig, Germany

3. Molecular Evolution & Animal Systematics, University of Leipzig, Leipzig, Germany

4. Department of Integrative Biology, University of California, Berkeley, Berkeley, CA, USA

5. Swarm Intelligence and Complex Systems Group, Faculty of Mathematics and Computer Science, University of Leipzig, Leipzig, Germany

6. Center for Complex Networks Research, Northeastern University, Boston, MA, USA

7. Department of Conservation Biology, UFZ—Helmholtz Centre for Environmental Research, Leipzig, Germany

8. Department of Tisza River Research, Danube Research Institute, Centre for Ecological Research, Hungarian Academy of Sciences, Debrecen, Hungary

9. CIBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos, InBIO, Laboratório Associado, Universidade do Porto, Vairão, Portugal

10. Competence Center for Scalable Data Services and Solutions Dresden/Leipzig, Universität Leipzig, Leipzig, Germany

11. Max-Planck-Institute for Mathematics in the Sciences, Leipzig, Germany

12. Department of Theoretical Chemistry, University of Vienna, Wien, Austria

13. Institute for Biology, Freie Universität Berlin, Berlin, Germany

Abstract

Abstract The European green lizards of the Lacerta viridis complex consist of two closely related species, L. viridis and Lacerta bilineata that split less than 7 million years ago in the presence of gene flow. Recently, a third lineage, referred to as the “Adriatic” was described within the L. viridis complex distributed from Slovenia to Greece. However, whether gene flow between the Adriatic lineage and L. viridis or L. bilineata has occurred and the evolutionary processes involved in their diversification are currently unknown. We hypothesized that divergence occurred in the presence of gene flow between multiple lineages and involved tissue-specific gene evolution. In this study, we sequenced the whole genome of an individual of the Adriatic lineage and tested for the presence of gene flow amongst L. viridis, L. bilineata, and Adriatic. Additionally, we sequenced transcriptomes from multiple tissues to understand tissue-specific effects. The species tree supports that the Adriatic lineage is a sister taxon to L. bilineata. We detected gene flow between the Adriatic lineage and L. viridis suggesting that the evolutionary history of the L. viridis complex is likely shaped by gene flow. Interestingly, we observed topological differences between the autosomal and Z-chromosome phylogenies with a few fast evolving genes on the Z-chromosome. Genes highly expressed in the ovaries and strongly co-expressed in the brain experienced accelerated evolution presumably contributing to establishing reproductive isolation in the L. viridis complex.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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