Identification and characterization of satellite DNAs in two-toed sloths of the genus Choloepus (Megalonychidae, Xenarthra)
Autor: | Pedro Heringer, Valéria do Socorro Pereira, Marta Svartman, Mirela Pelizaro Valeri, Radarane Santos Sena, Gustavo C. S. Kuhn |
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Rok vydání: | 2020 |
Předmět: |
0106 biological sciences
0301 basic medicine Choloepus didactylus Bradypus variegatus lcsh:Medicine Evolutionary biology DNA Satellite 010603 evolutionary biology 01 natural sciences Article 03 medical and health sciences Cytogenetics Tandem repeat Genus biology.animal Animals lcsh:Science Phylogeny Multidisciplinary Anteater Genome biology lcsh:R Xenarthra Sloth biology.organism_classification Sloths Megalonychidae Phylogenetics 030104 developmental biology Molecular evolution lcsh:Q |
Zdroj: | Scientific Reports Scientific Reports, Vol 10, Iss 1, Pp 1-11 (2020) |
ISSN: | 2045-2322 |
Popis: | Choloepus, the only extant genus of the Megalonychidae family, is composed of two living species of two-toed sloths: Choloepus didactylus and C. hoffmanni. In this work, we identified and characterized the main satellite DNAs (satDNAs) in the sequenced genomes of these two species. SATCHO1, the most abundant satDNA in both species, is composed of 117 bp tandem repeat sequences. The second most abundant satDNA, SATCHO2, is composed of ~ 2292 bp tandem repeats. Fluorescence in situ hybridization in C. hoffmanni revealed that both satDNAs are located in the centromeric regions of all chromosomes, except the X. In fact, these satDNAs present some centromeric characteristics in their sequences, such as dyad symmetries predicted to form secondary structures. PCR experiments indicated the presence of SATCHO1 sequences in two other Xenarthra species: the tree-toed sloth Bradypus variegatus and the anteater Myrmecophaga tridactyla. Nevertheless, SATCHO1 is present as large tandem arrays only in Choloepus species, thus likely representing a satDNA exclusively in this genus. Our results reveal interesting features of the satDNA landscape in Choloepus species with the potential to aid future phylogenetic studies in Xenarthra and mammalian genomes in general. |
Databáze: | OpenAIRE |
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