Characterising a genetic stronghold amidst pervasive admixture: Morelet’s crocodiles (Crocodylus moreletii) in central Yucatan
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Published:2023-07-22
Issue:6
Volume:24
Page:893-903
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ISSN:1566-0621
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Container-title:Conservation Genetics
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language:en
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Short-container-title:Conserv Genet
Author:
Barão-Nóbrega José António L.ORCID, González-Jáuregui MauricioORCID, Padilla-Paz SergioORCID, Maher Kathryn H.ORCID, Martínez-Arce ArelyORCID, Cedeño-Vázquez José RogelioORCID, Jehle RobertORCID
Abstract
AbstractWhen backcrosses are fertile, interbreeding between endangered taxa can lead to the admixture of gene pools under threat. One such case pertains to the Mesoamerican crocodile Crocodylus moreletii, a species which shows strong signatures of both recent hybridisation and historic intogression with the American crocodile C. acutus across large parts of its range. In the present paper, we use RAD-seq derived SNPs (4980 nuclear and seven mtDNA loci) to demonstrate that C. moreletii populations inhabiting the region of Calakmul in central Yucatan (Mexico) are rather unaffected by hybridization, despite being surrounded by coastal areas where pervasive admixture has previously been documented. All (based on fastSTRUCTURE) and 96% (based on NGSadmix) of 84 genotyped individuals from 18 sampled waterbodies (locally termed aguadas) were free from nuclear introgression of C. acutus DNA at at threshold of 0.95. Seven individuals (8%) possessed a C. acutus mtDNA haplotype, five of which were derived from two adjacent, rather peripheral aguadas. Spatial inferences based on a DAPC and fineRADstructure further showed that the region of Calakmul is inhabited by three genetic clusters spanning across a set of distinct aguadas each. Taken together, our findings reveal that central Yucatan contains the currently largest documented stronghold of C. moreletii populations only marginally affected by introgression, which has major implications for the conservation management of this important flagship species.
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Ecology, Evolution, Behavior and Systematics
Reference84 articles.
1. Abbott R, Albach D, Ansell S, Arntzen JW, Baird SJ, Bierne N, Boughman J, Brelsford A, Buerkle CA, Buggs R, Butlin RK, Dieckmann U, Eroukhmanoff F, Grill A, Cahan SH, Hermansen JS, Hewitt G, Hudson AG, Jiggins C, Jones J, Keller B, Marczewski T, Mallet J, Martinez-Rodriguez P, Most M, Mullen S, Nichols R, Nolte AW, Parisod C, Pfennig K, Rice AM, Ritchie MG, Seifert B, Smadja CM, Stelkens R, Szymura JM, Vainola R, Wolf JB, Zinner D (2013) Hybridization and speciation. J Evol Biol 26:229–246. https://doi.org/10.1111/j.1420-9101.2012.02599.x 2. Allendorf FW, Leary RF, Spruell P, Wenburg JK (2001) The problems with hybrids: setting conservation guidelines. Trends Ecol Evol 16:613–622. https://doi.org/10.1016/S0169-5347(01)02290-X 3. Allendorf FW, Funk WC, Aitken SN, Byrne M, Luikart G (2022) Conservation and the genomics of populations. Oxford University Press, Oxford 4. Arntzen JW, Jehle R, Wielstra B (2021) Genetic and morphological data demonstrate hybridization and backcrossing in a pair of salamanders at the far end of the speciation continuum. Evol Appl 14:2784–2793. https://doi.org/10.1111/eva.13312 5. Avila-Cervantes J, Arias C, Venegas-Anaya M, Vargas M, Larsson HCE, McMillan WO (2021) Effect of the Central American Isthmus on gene flow and divergence of the American crocodile (Crocodylus acutus). Evolution 75:245–259. https://doi.org/10.1111/evo.14139
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