Laboratory of Molecular Genetics for Reproduction, National Institute for Basic Biology, Okazaki 444-8787, Japan The Graduate University for Advanced Studies (SOKENDAI), Okazaki 444-8585, Japan.
Department of Physiological Chemistry, University of Würzburg, D-97074 Würzburg, Germany INRA, UR1037 Fish Physiology and Genomics, Rennes F-35000, France.
Development. 2014 Sep;141(17):3363-9. doi: 10.1242/dev.106864. Epub 2014 Jul 30.
In vertebrates that have been examined to date, the sexual identity of germ cells is determined by the sex of gonadal somatic cells. In the teleost fish medaka, a sex-determination gene on the Y chromosome, DMY/dmrt1bY, is expressed in gonadal somatic cells and regulates the sexual identity of germ cells. Here, we report a novel mechanism by which sex chromosomes cell-autonomously confer sexually different characters upon germ cells prior to gonad formation in a genetically sex-determined species. We have identified a novel gene, Sdgc (sex chromosome-dependent differential expression in germ cells), whose transcripts are highly enriched in early XY germ cells. Chimeric analysis revealed that sexually different expression of Sdgc is controlled in a germ cell-autonomous manner by the number of Y chromosomes. Unexpectedly, DMY/dmrt1bY was expressed in germ cells prior to gonad formation, but knockdown and overexpression of DMY/dmrt1bY did not affect Sdgc expression. We also found that XX and XY germ cells isolated before the onset of DMY/dmrt1bY expression in gonadal somatic cells behaved differently in vitro and were affected by Sdgc. Sdgc maps close to the sex-determination locus, and recombination around the two loci appears to be repressed. Our results provide important insights into the acquisition and plasticity of sexual differences at the cellular level even prior to the developmental stage of sex determination.
在迄今为止研究过的脊椎动物中,生殖细胞的性别身份是由性腺体细胞的性别决定的。在硬骨鱼斑马鱼中,Y 染色体上的性别决定基因 DMY/dmrt1bY 在性腺体细胞中表达,并调节生殖细胞的性别身份。在这里,我们报告了一种新的机制,即在遗传性别决定的物种中,性染色体在性腺形成之前自主地赋予生殖细胞不同的性别特征。我们已经鉴定出一个新的基因 Sdgc(生殖细胞中依赖性染色体的差异表达),其转录本在早期 XY 生殖细胞中高度富集。嵌合体分析表明,Sdgc 的性别差异表达以生殖细胞自主的方式受到 Y 染色体数目的控制。出乎意料的是,DMY/dmrt1bY 在性腺体细胞中 DMY/dmrt1bY 表达之前就在生殖细胞中表达,但 DMY/dmrt1bY 的敲低和过表达并不影响 Sdgc 的表达。我们还发现,在性腺体细胞中 DMY/dmrt1bY 表达之前分离的 XX 和 XY 生殖细胞在体外表现出不同的行为,并受到 Sdgc 的影响。Sdgc 靠近性别决定基因座,并且两个基因座周围的重组似乎受到抑制。我们的结果提供了重要的见解,即使在性别决定的发育阶段之前,在细胞水平上获得和改变性别差异。