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OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads

BACKGROUND: In chickens, as in most birds, female gonad morphogenesis is asymmetrical. Gonads appear first rather similarly, but only the left one undergoes full differentiation and gives rise to a functional ovary. The right gonad, in which the cortex does not develop, remains restricted to the med...

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Autores principales: Carré-Eusèbe, Danièle, Coudouel, Noëlline, Magre, Solange
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2717909/
https://www.ncbi.nlm.nih.gov/pubmed/19534790
http://dx.doi.org/10.1186/1742-4690-6-59
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author Carré-Eusèbe, Danièle
Coudouel, Noëlline
Magre, Solange
author_facet Carré-Eusèbe, Danièle
Coudouel, Noëlline
Magre, Solange
author_sort Carré-Eusèbe, Danièle
collection PubMed
description BACKGROUND: In chickens, as in most birds, female gonad morphogenesis is asymmetrical. Gonads appear first rather similarly, but only the left one undergoes full differentiation and gives rise to a functional ovary. The right gonad, in which the cortex does not develop, remains restricted to the medulla and finally regresses. Opportunity was taken of this left-right asymmetry to perform a suppression subtractive hybridization screening to select for transcripts preferentially expressed in the developing left ovary as compared to the right one, and thus identify genes that are potentially involved in the process of ovarian differentiation. RESULTS: One of these transcripts, named Ovex1 according to its expression profile, corresponds to an endogenous retrovirus that has not been previously characterized. It is transcribed as full-length and singly spliced mRNAs and contains three uninterrupted open reading frames coding potentially for proteins with homology to Gag and Pro-Pol retroviral polyproteins and a third protein showing only a weak similarity with Env glycoproteins. Ovex1 is severely degenerated; it is devoid of typical long terminal repeats and displays some evidence of recombination. An orthologous Ovex1 locus was identified in the genome of zebra finch, a member of a different bird order, and similar sequences were detected in turkey, guinea fowl, and duck DNA. The relationship between these sequences follows the bird phylogeny, suggesting vertical transmission of the endogenous retrovirus for more than 100 million years. Ovex1 is transcribed in chicken gonads with a sex-dependent and left-right asymmetrical pattern. It is first expressed in the cortex of the left indifferent gonads of both sexes. Expression is transient in the left testis and absent in the right one. In developing ovaries, Ovex1 transcription increases sharply in the left cortex and is weakly detected in the medulla. After folliculogenesis, Ovex1-expressing cells constitute the follicular granulosa cell layer. Ovex1 expression highlights a striking desquamation process that leads to profound cortical remodeling associated with follicle morphogenesis. CONCLUSION: Evidence for a selection pressure at the protein level suggests that this endogenous retrovirus, expressed in the ovarian supporting cell lineage, might play an active role in bird ovarian physiology.
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spelling pubmed-27179092009-07-30 OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads Carré-Eusèbe, Danièle Coudouel, Noëlline Magre, Solange Retrovirology Research BACKGROUND: In chickens, as in most birds, female gonad morphogenesis is asymmetrical. Gonads appear first rather similarly, but only the left one undergoes full differentiation and gives rise to a functional ovary. The right gonad, in which the cortex does not develop, remains restricted to the medulla and finally regresses. Opportunity was taken of this left-right asymmetry to perform a suppression subtractive hybridization screening to select for transcripts preferentially expressed in the developing left ovary as compared to the right one, and thus identify genes that are potentially involved in the process of ovarian differentiation. RESULTS: One of these transcripts, named Ovex1 according to its expression profile, corresponds to an endogenous retrovirus that has not been previously characterized. It is transcribed as full-length and singly spliced mRNAs and contains three uninterrupted open reading frames coding potentially for proteins with homology to Gag and Pro-Pol retroviral polyproteins and a third protein showing only a weak similarity with Env glycoproteins. Ovex1 is severely degenerated; it is devoid of typical long terminal repeats and displays some evidence of recombination. An orthologous Ovex1 locus was identified in the genome of zebra finch, a member of a different bird order, and similar sequences were detected in turkey, guinea fowl, and duck DNA. The relationship between these sequences follows the bird phylogeny, suggesting vertical transmission of the endogenous retrovirus for more than 100 million years. Ovex1 is transcribed in chicken gonads with a sex-dependent and left-right asymmetrical pattern. It is first expressed in the cortex of the left indifferent gonads of both sexes. Expression is transient in the left testis and absent in the right one. In developing ovaries, Ovex1 transcription increases sharply in the left cortex and is weakly detected in the medulla. After folliculogenesis, Ovex1-expressing cells constitute the follicular granulosa cell layer. Ovex1 expression highlights a striking desquamation process that leads to profound cortical remodeling associated with follicle morphogenesis. CONCLUSION: Evidence for a selection pressure at the protein level suggests that this endogenous retrovirus, expressed in the ovarian supporting cell lineage, might play an active role in bird ovarian physiology. BioMed Central 2009-06-17 /pmc/articles/PMC2717909/ /pubmed/19534790 http://dx.doi.org/10.1186/1742-4690-6-59 Text en Copyright © 2009 Carré-Eusèbe et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Carré-Eusèbe, Danièle
Coudouel, Noëlline
Magre, Solange
OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
title OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
title_full OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
title_fullStr OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
title_full_unstemmed OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
title_short OVEX1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
title_sort ovex1, a novel chicken endogenous retrovirus with sex-specific and left-right asymmetrical expression in gonads
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2717909/
https://www.ncbi.nlm.nih.gov/pubmed/19534790
http://dx.doi.org/10.1186/1742-4690-6-59
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