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Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos

Geckos (Gekkota), the species-rich clade of reptiles with more than 2200 currently recognized species, demonstrate a remarkable variability in diploid chromosome numbers (2n = 16–48) and mode of sex determination. However, only a small fraction of gekkotan species have been studied with cytogenetic...

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Autores principales: Chrostek, Gabriela, Domaradzka, Aleksandra, Yurchenko, Alona, Kratochvíl, Lukáš, Mazzoleni, Sofia, Rovatsos, Michail
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9859368/
https://www.ncbi.nlm.nih.gov/pubmed/36672918
http://dx.doi.org/10.3390/genes14010178
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author Chrostek, Gabriela
Domaradzka, Aleksandra
Yurchenko, Alona
Kratochvíl, Lukáš
Mazzoleni, Sofia
Rovatsos, Michail
author_facet Chrostek, Gabriela
Domaradzka, Aleksandra
Yurchenko, Alona
Kratochvíl, Lukáš
Mazzoleni, Sofia
Rovatsos, Michail
author_sort Chrostek, Gabriela
collection PubMed
description Geckos (Gekkota), the species-rich clade of reptiles with more than 2200 currently recognized species, demonstrate a remarkable variability in diploid chromosome numbers (2n = 16–48) and mode of sex determination. However, only a small fraction of gekkotan species have been studied with cytogenetic methods. Here, we applied both conventional (karyotype reconstruction and C-banding) and molecular (fluorescence in situ hybridization with probes for rDNA loci and telomeric repeats) cytogenetic analyses in seven species of geckos, namely Blaesodactylus boivini, Chondrodactylus laevigatus, Gekko badenii, Gekko cf. lionotum, Hemidactylus sahgali, Homopholis wahlbergii (Gekkonidae) and Ptyodactylus togoensis (Phyllodactylidae), in order to provide further insights into the evolution of karyotypes in geckos. Our analysis revealed the presence of interstitial telomeric repeats in four species, but we were not able to conclude if they are remnants of previous chromosome rearrangements or were formed by an accumulation of telomeric-like satellite motifs. Even though sex chromosomes were previously identified in several species from the genera Hemidactylus and Gekko by cytogenetic and/or genomic methods, they were not detected by us in any examined species. Our examined species either have poorly differentiated sex chromosomes or, possibly, environmental sex determination. Future studies should explore the effect of temperature and conduct genome-wide analyses in order to identify the mode of sex determination in these species.
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spelling pubmed-98593682023-01-21 Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos Chrostek, Gabriela Domaradzka, Aleksandra Yurchenko, Alona Kratochvíl, Lukáš Mazzoleni, Sofia Rovatsos, Michail Genes (Basel) Article Geckos (Gekkota), the species-rich clade of reptiles with more than 2200 currently recognized species, demonstrate a remarkable variability in diploid chromosome numbers (2n = 16–48) and mode of sex determination. However, only a small fraction of gekkotan species have been studied with cytogenetic methods. Here, we applied both conventional (karyotype reconstruction and C-banding) and molecular (fluorescence in situ hybridization with probes for rDNA loci and telomeric repeats) cytogenetic analyses in seven species of geckos, namely Blaesodactylus boivini, Chondrodactylus laevigatus, Gekko badenii, Gekko cf. lionotum, Hemidactylus sahgali, Homopholis wahlbergii (Gekkonidae) and Ptyodactylus togoensis (Phyllodactylidae), in order to provide further insights into the evolution of karyotypes in geckos. Our analysis revealed the presence of interstitial telomeric repeats in four species, but we were not able to conclude if they are remnants of previous chromosome rearrangements or were formed by an accumulation of telomeric-like satellite motifs. Even though sex chromosomes were previously identified in several species from the genera Hemidactylus and Gekko by cytogenetic and/or genomic methods, they were not detected by us in any examined species. Our examined species either have poorly differentiated sex chromosomes or, possibly, environmental sex determination. Future studies should explore the effect of temperature and conduct genome-wide analyses in order to identify the mode of sex determination in these species. MDPI 2023-01-09 /pmc/articles/PMC9859368/ /pubmed/36672918 http://dx.doi.org/10.3390/genes14010178 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chrostek, Gabriela
Domaradzka, Aleksandra
Yurchenko, Alona
Kratochvíl, Lukáš
Mazzoleni, Sofia
Rovatsos, Michail
Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos
title Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos
title_full Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos
title_fullStr Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos
title_full_unstemmed Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos
title_short Cytogenetic Analysis of Seven Species of Gekkonid and Phyllodactylid Geckos
title_sort cytogenetic analysis of seven species of gekkonid and phyllodactylid geckos
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9859368/
https://www.ncbi.nlm.nih.gov/pubmed/36672918
http://dx.doi.org/10.3390/genes14010178
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