Cargando…

Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes

Glyphorynchus spirurus (GSP), also called the Wedge-billed Woodcreeper (Furnariidae) has an extensive distribution in the Americas, including the Atlantic coast of Brazil. Nevertheless, there is no information about its karyotype or genome organization. To contribute to the knowledge of chromosomal...

Descripción completa

Detalles Bibliográficos
Autores principales: Ribas, Talita Fernanda Augusto, Nagamachi, Cleusa Yoshiko, Aleixo, Alexandre, Pinheiro, Melquizedec Luiz Silva, O´Brien, Patricia Caroline Mary, Ferguson-Smith, Malcolm Andrew, Yang, Fengtang, Suarez, Pablo, Pieczarka, Julio Cesar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6107148/
https://www.ncbi.nlm.nih.gov/pubmed/30138388
http://dx.doi.org/10.1371/journal.pone.0202040
_version_ 1783349920279822336
author Ribas, Talita Fernanda Augusto
Nagamachi, Cleusa Yoshiko
Aleixo, Alexandre
Pinheiro, Melquizedec Luiz Silva
O´Brien, Patricia Caroline Mary
Ferguson-Smith, Malcolm Andrew
Yang, Fengtang
Suarez, Pablo
Pieczarka, Julio Cesar
author_facet Ribas, Talita Fernanda Augusto
Nagamachi, Cleusa Yoshiko
Aleixo, Alexandre
Pinheiro, Melquizedec Luiz Silva
O´Brien, Patricia Caroline Mary
Ferguson-Smith, Malcolm Andrew
Yang, Fengtang
Suarez, Pablo
Pieczarka, Julio Cesar
author_sort Ribas, Talita Fernanda Augusto
collection PubMed
description Glyphorynchus spirurus (GSP), also called the Wedge-billed Woodcreeper (Furnariidae) has an extensive distribution in the Americas, including the Atlantic coast of Brazil. Nevertheless, there is no information about its karyotype or genome organization. To contribute to the knowledge of chromosomal evolution in Passeriformes we analysed the karyotype of Glyphorynchus spirurus by classic and molecular cytogenetics methods. We show that Glyphorynchus spirurus has a 2n = 80 karyotype with a fundamental number (FN) of 84, similar to the avian putative ancestral karyotype (PAK). Glyphorynchus spirurus pair 1 was heteromorphic in the Tapajós population whereby the short arms varied in sizes, possibly due to a pericentric inversion, as described in other Furnariidae birds. FISH with the Histone H5 probe revealed a signal in the pericentromeric region of G. spirurus chromosome 5 and rDNA 18S showed interstitial signal in GSP-1. Chromosome painting with Gallus gallus (GGA) macrochromosomes 1–9 probes showed disruption of chromosome syntenies of GGA-1, 2 and 4 by fission in Glyphorynchus spirurus. Our results confirm that the GGA1 centric fission is a synapomorphic character for the phylogenetic branch composed of Strigiformes, Passeriformes, Columbiformes and Falconiformes. On the other hand, the GGA-2 fission is reported here for the first time in Passeriformes. Chromosome painting with BOE whole chromosome probes confirmed these rearrangements in Glyphorynchus spirurus revealed by Gallus gallus 1–9 probes, in addition to enabling the establishment of genome-wide homology map.
format Online
Article
Text
id pubmed-6107148
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-61071482018-08-30 Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes Ribas, Talita Fernanda Augusto Nagamachi, Cleusa Yoshiko Aleixo, Alexandre Pinheiro, Melquizedec Luiz Silva O´Brien, Patricia Caroline Mary Ferguson-Smith, Malcolm Andrew Yang, Fengtang Suarez, Pablo Pieczarka, Julio Cesar PLoS One Research Article Glyphorynchus spirurus (GSP), also called the Wedge-billed Woodcreeper (Furnariidae) has an extensive distribution in the Americas, including the Atlantic coast of Brazil. Nevertheless, there is no information about its karyotype or genome organization. To contribute to the knowledge of chromosomal evolution in Passeriformes we analysed the karyotype of Glyphorynchus spirurus by classic and molecular cytogenetics methods. We show that Glyphorynchus spirurus has a 2n = 80 karyotype with a fundamental number (FN) of 84, similar to the avian putative ancestral karyotype (PAK). Glyphorynchus spirurus pair 1 was heteromorphic in the Tapajós population whereby the short arms varied in sizes, possibly due to a pericentric inversion, as described in other Furnariidae birds. FISH with the Histone H5 probe revealed a signal in the pericentromeric region of G. spirurus chromosome 5 and rDNA 18S showed interstitial signal in GSP-1. Chromosome painting with Gallus gallus (GGA) macrochromosomes 1–9 probes showed disruption of chromosome syntenies of GGA-1, 2 and 4 by fission in Glyphorynchus spirurus. Our results confirm that the GGA1 centric fission is a synapomorphic character for the phylogenetic branch composed of Strigiformes, Passeriformes, Columbiformes and Falconiformes. On the other hand, the GGA-2 fission is reported here for the first time in Passeriformes. Chromosome painting with BOE whole chromosome probes confirmed these rearrangements in Glyphorynchus spirurus revealed by Gallus gallus 1–9 probes, in addition to enabling the establishment of genome-wide homology map. Public Library of Science 2018-08-23 /pmc/articles/PMC6107148/ /pubmed/30138388 http://dx.doi.org/10.1371/journal.pone.0202040 Text en © 2018 Ribas et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ribas, Talita Fernanda Augusto
Nagamachi, Cleusa Yoshiko
Aleixo, Alexandre
Pinheiro, Melquizedec Luiz Silva
O´Brien, Patricia Caroline Mary
Ferguson-Smith, Malcolm Andrew
Yang, Fengtang
Suarez, Pablo
Pieczarka, Julio Cesar
Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes
title Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes
title_full Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes
title_fullStr Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes
title_full_unstemmed Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes
title_short Chromosome painting in Glyphorynchus spirurus (Vieillot, 1819) detects a new fission in Passeriformes
title_sort chromosome painting in glyphorynchus spirurus (vieillot, 1819) detects a new fission in passeriformes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6107148/
https://www.ncbi.nlm.nih.gov/pubmed/30138388
http://dx.doi.org/10.1371/journal.pone.0202040
work_keys_str_mv AT ribastalitafernandaaugusto chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT nagamachicleusayoshiko chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT aleixoalexandre chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT pinheiromelquizedecluizsilva chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT obrienpatriciacarolinemary chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT fergusonsmithmalcolmandrew chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT yangfengtang chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT suarezpablo chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes
AT pieczarkajuliocesar chromosomepaintinginglyphorynchusspirurusvieillot1819detectsanewfissioninpasseriformes