Cargando…

Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators

After birds diverged from mammals, different ancestral autosomes evolved into sex chromosomes in each lineage. In birds, females are ZW and males ZZ, but in mammals females are XX and males XY. We sequenced the chicken W chromosome, compared its gene content with our reconstruction of the ancestral...

Descripción completa

Detalles Bibliográficos
Autores principales: Bellott, Daniel W., Skaletsky, Helen, Cho, Ting-Jan, Brown, Laura, Locke, Devin, Chen, Nancy, Galkina, Svetlana, Pyntikova, Tatyana, Koutseva, Natalia, Graves, Tina, Kremitzki, Colin, Warren, Wesley C., Clark, Andrew G., Gaginskaya, Elena, Wilson, Richard K., Page, David C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5359078/
https://www.ncbi.nlm.nih.gov/pubmed/28135246
http://dx.doi.org/10.1038/ng.3778
_version_ 1782516330484727808
author Bellott, Daniel W.
Skaletsky, Helen
Cho, Ting-Jan
Brown, Laura
Locke, Devin
Chen, Nancy
Galkina, Svetlana
Pyntikova, Tatyana
Koutseva, Natalia
Graves, Tina
Kremitzki, Colin
Warren, Wesley C.
Clark, Andrew G.
Gaginskaya, Elena
Wilson, Richard K.
Page, David C.
author_facet Bellott, Daniel W.
Skaletsky, Helen
Cho, Ting-Jan
Brown, Laura
Locke, Devin
Chen, Nancy
Galkina, Svetlana
Pyntikova, Tatyana
Koutseva, Natalia
Graves, Tina
Kremitzki, Colin
Warren, Wesley C.
Clark, Andrew G.
Gaginskaya, Elena
Wilson, Richard K.
Page, David C.
author_sort Bellott, Daniel W.
collection PubMed
description After birds diverged from mammals, different ancestral autosomes evolved into sex chromosomes in each lineage. In birds, females are ZW and males ZZ, but in mammals females are XX and males XY. We sequenced the chicken W chromosome, compared its gene content with our reconstruction of the ancestral autosomes, and followed the evolutionary trajectory of ancestral W-linked genes across birds. Avian W chromosomes evolved in parallel with mammalian Y chromosomes, preserving ancestral genes through selection to maintain the dosage of broadly-expressed regulators of key cellular processes. We propose that, like the human Y chromosome, the chicken W chromosome is essential for embryonic viability of the heterogametic sex. Unlike other sequenced sex chromosomes, the chicken W did not acquire and amplify genes specifically expressed in reproductive tissues. We speculate that the pressures that drive the acquisition of reproduction related genes on sex chromosomes may be specific to the male germ line.
format Online
Article
Text
id pubmed-5359078
institution National Center for Biotechnology Information
language English
publishDate 2017
record_format MEDLINE/PubMed
spelling pubmed-53590782017-07-30 Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators Bellott, Daniel W. Skaletsky, Helen Cho, Ting-Jan Brown, Laura Locke, Devin Chen, Nancy Galkina, Svetlana Pyntikova, Tatyana Koutseva, Natalia Graves, Tina Kremitzki, Colin Warren, Wesley C. Clark, Andrew G. Gaginskaya, Elena Wilson, Richard K. Page, David C. Nat Genet Article After birds diverged from mammals, different ancestral autosomes evolved into sex chromosomes in each lineage. In birds, females are ZW and males ZZ, but in mammals females are XX and males XY. We sequenced the chicken W chromosome, compared its gene content with our reconstruction of the ancestral autosomes, and followed the evolutionary trajectory of ancestral W-linked genes across birds. Avian W chromosomes evolved in parallel with mammalian Y chromosomes, preserving ancestral genes through selection to maintain the dosage of broadly-expressed regulators of key cellular processes. We propose that, like the human Y chromosome, the chicken W chromosome is essential for embryonic viability of the heterogametic sex. Unlike other sequenced sex chromosomes, the chicken W did not acquire and amplify genes specifically expressed in reproductive tissues. We speculate that the pressures that drive the acquisition of reproduction related genes on sex chromosomes may be specific to the male germ line. 2017-01-30 2017-03 /pmc/articles/PMC5359078/ /pubmed/28135246 http://dx.doi.org/10.1038/ng.3778 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Bellott, Daniel W.
Skaletsky, Helen
Cho, Ting-Jan
Brown, Laura
Locke, Devin
Chen, Nancy
Galkina, Svetlana
Pyntikova, Tatyana
Koutseva, Natalia
Graves, Tina
Kremitzki, Colin
Warren, Wesley C.
Clark, Andrew G.
Gaginskaya, Elena
Wilson, Richard K.
Page, David C.
Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators
title Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators
title_full Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators
title_fullStr Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators
title_full_unstemmed Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators
title_short Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators
title_sort avian w and mammalian y chromosomes convergently retained dosage-sensitive regulators
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5359078/
https://www.ncbi.nlm.nih.gov/pubmed/28135246
http://dx.doi.org/10.1038/ng.3778
work_keys_str_mv AT bellottdanielw avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT skaletskyhelen avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT chotingjan avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT brownlaura avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT lockedevin avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT chennancy avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT galkinasvetlana avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT pyntikovatatyana avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT koutsevanatalia avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT gravestina avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT kremitzkicolin avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT warrenwesleyc avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT clarkandrewg avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT gaginskayaelena avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT wilsonrichardk avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators
AT pagedavidc avianwandmammalianychromosomesconvergentlyretaineddosagesensitiveregulators