Suppr超能文献

雄激素诱导虹鳟鱼雄性化会导致早期性腺基因表达谱明显失调。

Androgen-induced masculinization in rainbow trout results in a marked dysregulation of early gonadal gene expression profiles.

作者信息

Baron Daniel, Montfort Jérôme, Houlgatte Rémi, Fostier Alexis, Guiguen Yann

机构信息

INRA, UR1037 SCRIBE, IFR140, Ouest-Genopole, F-35000 Rennes, France.

出版信息

BMC Genomics. 2007 Oct 4;8:357. doi: 10.1186/1471-2164-8-357.

Abstract

BACKGROUND

Fish gonadal sex differentiation is affected by sex steroids treatments providing an efficient strategy to control the sexual phenotype of fish for aquaculture purposes. However, the biological effects of such treatments are poorly understood. The aim of this study was to identify the main effects of an androgen masculinizing treatment (11beta-hydroxyandrostenedione, 11betaOHDelta4, 10 mg/kg of food for 3 months) on gonadal gene expression profiles of an all-female genetic population of trout. To characterize the most important molecular features of this process, we used a large scale gene expression profiling approach using rainbow trout DNA microarrays combined with a detailed gene ontology (GO) analysis.

RESULTS

2,474 genes were characterized as up-regulated or down-regulated in trout female gonads masculinized by androgen in comparison with control male or female gonads from untreated all-male and all-female genetic populations. These genes were classified in 13 k-means clusters of temporally correlated expression profiles. Gene ontology (GO) data mining revealed that androgen treatment triggers a marked down-regulation of genes potentially involved in early oogenesis processes (GO 'mitotic cell cycle', 'nucleolus'), an up-regulation of the translation machinery (GO 'ribosome') along with a down-regulation of proteolysis (GO 'proteolysis', 'peptidase' and 'metallopeptidase activity'). Genes considered as muscle fibres markers (GO 'muscle contraction') and genes annotated as structural constituents of the extracellular matrix (GO 'extracellular matrix') or related to meiosis (GO 'chromosome' and 'meiosis') were found significantly enriched in the two clusters of genes specifically up-regulated in androgen-treated female gonads. GO annotations 'Sex differentiation' and 'steroid biosynthesis' were enriched in a cluster of genes with high expression levels only in control males. Interestingly none of these genes were stimulated by the masculinizing androgen treatment.

CONCLUSION

This study provides evidence that androgen masculinization results in a marked dysregulation of early gene expression profiles when compared to natural testicular or ovarian differentiation. Based on these results we suggest that, in our experimental conditions, androgen masculinization proceeds mainly through an early inhibition of female development.

摘要

背景

鱼类性腺性别分化受性类固醇处理的影响,这为水产养殖中控制鱼类性别表型提供了一种有效策略。然而,此类处理的生物学效应尚不清楚。本研究的目的是确定雄激素雄性化处理(11β-羟基雄烯二酮,11βOHΔ4,10毫克/千克饲料,持续3个月)对全雌性遗传群体虹鳟鱼性腺基因表达谱的主要影响。为了表征这一过程最重要的分子特征,我们采用了大规模基因表达谱分析方法,使用虹鳟鱼DNA微阵列,并结合详细的基因本体(GO)分析。

结果

与来自未经处理的全雄性和全雌性遗传群体的对照雄性或雌性性腺相比,在经雄激素雄性化处理的虹鳟鱼雌性性腺中,有2474个基因被鉴定为上调或下调。这些基因被分类到13个具有时间相关表达谱的k均值聚类中。基因本体(GO)数据挖掘显示,雄激素处理引发了可能参与早期卵子发生过程(GO“有丝分裂细胞周期”、“核仁”)的基因的显著下调,翻译机制(GO“核糖体”)的上调以及蛋白水解作用(GO“蛋白水解”、“肽酶”和“金属肽酶活性”)的下调。被视为肌肉纤维标记物的基因(GO“肌肉收缩”)以及被注释为细胞外基质结构成分(GO“细胞外基质”)或与减数分裂相关的基因(GO“染色体”和“减数分裂”),在雄激素处理的雌性性腺中特异性上调的两个基因聚类中显著富集。GO注释“性别分化”和“类固醇生物合成”仅在对照雄性的高表达基因聚类中富集。有趣的是,这些基因均未受到雄性化雄激素处理的刺激。

结论

本研究提供了证据表明,与自然睾丸或卵巢分化相比,雄激素雄性化导致早期基因表达谱的显著失调。基于这些结果,我们认为,在我们的实验条件下,雄激素雄性化主要通过早期抑制雌性发育来进行。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验