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The functional gene...
The functional genetic architecture of egg-laying and live-bearing reproduction in common lizards
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Recknagel, Hans (author)
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Carruthers, Madeleine (author)
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Yurchenko, Andrey A. (author)
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Nokhbatolfoghahai, Mohsen (author)
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- Kamenos, Nicholas A. (author)
- School of Geographical and Earth Sciences, University of Glasgow, Glasgow, United Kingdom
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Bain, Maureen M. (author)
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Elmer, Kathryn R. (author)
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(creator_code:org_t)
- 2021-10-07
- 2021
- English.
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In: Nature Ecology & Evolution. - : Springer Nature. - 2397-334X. ; 5:11, s. 1546-1556
- Related links:
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https://urn.kb.se/re...
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https://doi.org/10.1...
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Abstract
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- All amniotes reproduce either by egg-laying (oviparity), which is ancestral to vertebrates or by live-bearing (viviparity), which has evolved many times independently. However, the genetic basis of these parity modes has never been resolved and, consequently, its convergence across evolutionary scales is currently unknown. Here, we leveraged natural hybridizations between oviparous and viviparous common lizards (Zootoca vivipara) to describe the functional genes and genetic architecture of parity mode and its key traits, eggshell and gestation length, and compared our findings across vertebrates. In these lizards, parity trait genes were associated with progesterone-binding functions and enriched for tissue remodelling and immune system pathways. Viviparity involved more genes and complex gene networks than did oviparity. Angiogenesis, vascular endothelial growth and adrenoreceptor pathways were enriched in the viviparous female reproductive tissue, while pathways for transforming growth factor were enriched in the oviparous. Natural selection on these parity mode genes was evident genome-wide. Our comparison to seven independent origins of viviparity in mammals, squamates and fish showed that genes active in pregnancy were related to immunity, tissue remodelling and blood vessel generation. Therefore, our results suggest that pre-established regulatory networks are repeatedly recruited for viviparity and that these are shared at deep evolutionary scales. Using natural hybrids between oviparous and viviparous common lizards, the authors describe the genetic architecture of parity mode and conduct a comparative analysis of genes associated with viviparity in mammals, squamates and fish.
Subject headings
- NATURVETENSKAP -- Biologi -- Evolutionsbiologi (hsv//swe)
- NATURAL SCIENCES -- Biological Sciences -- Evolutionary Biology (hsv//eng)
Publication and Content Type
- ref (subject category)
- art (subject category)
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