Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon

<p>Abstract</p> <p>Background</p> <p>The products of <it>cyp19</it>, <it>dax</it>, <it>foxl2</it>, <it>mis</it>, <it>sf1 </it>and <it>sox9 </it>have each been associated with sex-determining process...

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Main Authors: Phillips Ruth B, Rondeau Eric B, Robb Adrienne, So Stacy, Reid Linda, de Boer Johan G, Yazawa Ryosuke, Yasuike Motoshige, von Schalburg Kristian R, Davidson William S, Koop Ben F
Format: Article
Language:English
Published: BMC 2011-01-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/12/31
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spelling doaj-e039f4ec199748488b0c35316b8d4fd42020-11-25T01:41:01ZengBMCBMC Genomics1471-21642011-01-011213110.1186/1471-2164-12-31Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmonPhillips Ruth BRondeau Eric BRobb AdrienneSo StacyReid Lindade Boer Johan GYazawa RyosukeYasuike Motoshigevon Schalburg Kristian RDavidson William SKoop Ben F<p>Abstract</p> <p>Background</p> <p>The products of <it>cyp19</it>, <it>dax</it>, <it>foxl2</it>, <it>mis</it>, <it>sf1 </it>and <it>sox9 </it>have each been associated with sex-determining processes among vertebrates. We provide evidence for expression of these regulators very early in salmonid development and in tissues outside of the hypothalamic-pituitary-adrenal/gonadal (HPAG) axis. Although the function of these factors in sexual differentiation have been defined, their roles in early development before sexual fate decisions and in tissues beyond the brain or gonad are essentially unknown.</p> <p>Results</p> <p>Bacterial artificial chromosomes containing salmon <it>dax1 </it>and <it>dax2</it>, <it>foxl2b </it>and <it>mis </it>were isolated and the regulatory regions that control their expression were characterized. Transposon integrations are implicated in the shaping of the <it>dax </it>and <it>foxl2 </it>loci. Splice variants for <it>cyp19b1 </it>and <it>mis </it>in both embryonic and adult tissues were detected and characterized. We found that <it>cyp19b1 </it>transcripts are generated that contain 5'-untranslated regions of different lengths due to cryptic splicing of the 3'-end of intron 1. We also demonstrate that salmon <it>mis </it>transcripts can encode prodomain products that present different C-termini and terminate before translation of the MIS hormone. Regulatory differences in the expression of two distinct aromatases <it>cyp19a </it>and <it>cyp19b1 </it>are exerted, despite transcription of their transactivators (ie; <it>dax1</it>, <it>foxl2</it>, <it>sf1</it>) occurring much earlier during embryonic development.</p> <p>Conclusions</p> <p>We report the embryonic and extragonadal expression of <it>dax</it>, <it>foxl2</it>, <it>mis </it>and other differentiation factors that indicate that they have functions that are more general and not restricted to steroidogenesis and gonadogenesis. Spliced <it>cyp19b1 </it>and <it>mis </it>transcripts are generated that may provide regulatory controls for tissue- or development-specific activities. Selection of <it>cyp19b1 </it>transcripts may be regulated by DAX-1, FOXL2 and SF-1 complexes that bind motifs in intron 1, or by signals within exon 2 that recruit splicing factors, or both. The potential translation of proteins bearing only the N-terminal MIS prodomain may modulate the functions of other TGF β family members in different tissues. The expression patterns of <it>dax1 </it>early in salmon embryogenesis implicate its role as a lineage determination factor. Other roles for these factors during embryogenesis and outside the HPAG axis are discussed.</p> http://www.biomedcentral.com/1471-2164/12/31
collection DOAJ
language English
format Article
sources DOAJ
author Phillips Ruth B
Rondeau Eric B
Robb Adrienne
So Stacy
Reid Linda
de Boer Johan G
Yazawa Ryosuke
Yasuike Motoshige
von Schalburg Kristian R
Davidson William S
Koop Ben F
spellingShingle Phillips Ruth B
Rondeau Eric B
Robb Adrienne
So Stacy
Reid Linda
de Boer Johan G
Yazawa Ryosuke
Yasuike Motoshige
von Schalburg Kristian R
Davidson William S
Koop Ben F
Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon
BMC Genomics
author_facet Phillips Ruth B
Rondeau Eric B
Robb Adrienne
So Stacy
Reid Linda
de Boer Johan G
Yazawa Ryosuke
Yasuike Motoshige
von Schalburg Kristian R
Davidson William S
Koop Ben F
author_sort Phillips Ruth B
title Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon
title_short Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon
title_full Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon
title_fullStr Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon
title_full_unstemmed Regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of Atlantic salmon
title_sort regulation and expression of sexual differentiation factors in embryonic and extragonadal tissues of atlantic salmon
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2011-01-01
description <p>Abstract</p> <p>Background</p> <p>The products of <it>cyp19</it>, <it>dax</it>, <it>foxl2</it>, <it>mis</it>, <it>sf1 </it>and <it>sox9 </it>have each been associated with sex-determining processes among vertebrates. We provide evidence for expression of these regulators very early in salmonid development and in tissues outside of the hypothalamic-pituitary-adrenal/gonadal (HPAG) axis. Although the function of these factors in sexual differentiation have been defined, their roles in early development before sexual fate decisions and in tissues beyond the brain or gonad are essentially unknown.</p> <p>Results</p> <p>Bacterial artificial chromosomes containing salmon <it>dax1 </it>and <it>dax2</it>, <it>foxl2b </it>and <it>mis </it>were isolated and the regulatory regions that control their expression were characterized. Transposon integrations are implicated in the shaping of the <it>dax </it>and <it>foxl2 </it>loci. Splice variants for <it>cyp19b1 </it>and <it>mis </it>in both embryonic and adult tissues were detected and characterized. We found that <it>cyp19b1 </it>transcripts are generated that contain 5'-untranslated regions of different lengths due to cryptic splicing of the 3'-end of intron 1. We also demonstrate that salmon <it>mis </it>transcripts can encode prodomain products that present different C-termini and terminate before translation of the MIS hormone. Regulatory differences in the expression of two distinct aromatases <it>cyp19a </it>and <it>cyp19b1 </it>are exerted, despite transcription of their transactivators (ie; <it>dax1</it>, <it>foxl2</it>, <it>sf1</it>) occurring much earlier during embryonic development.</p> <p>Conclusions</p> <p>We report the embryonic and extragonadal expression of <it>dax</it>, <it>foxl2</it>, <it>mis </it>and other differentiation factors that indicate that they have functions that are more general and not restricted to steroidogenesis and gonadogenesis. Spliced <it>cyp19b1 </it>and <it>mis </it>transcripts are generated that may provide regulatory controls for tissue- or development-specific activities. Selection of <it>cyp19b1 </it>transcripts may be regulated by DAX-1, FOXL2 and SF-1 complexes that bind motifs in intron 1, or by signals within exon 2 that recruit splicing factors, or both. The potential translation of proteins bearing only the N-terminal MIS prodomain may modulate the functions of other TGF β family members in different tissues. The expression patterns of <it>dax1 </it>early in salmon embryogenesis implicate its role as a lineage determination factor. Other roles for these factors during embryogenesis and outside the HPAG axis are discussed.</p>
url http://www.biomedcentral.com/1471-2164/12/31
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