Pailhoux Eric, Vigier Bernard, Schibler Laurent, Cribiu Edmond P, Cotinot Corinne, Vaiman Daniel
Laboratoire de biologie du développement et reproduction, Institut national de la recherche agronomique, 78352 Jouy-en-Josas Cedex, France.
Genet Sel Evol. 2005;37 Suppl 1(Suppl 1):S55-64. doi: 10.1186/1297-9686-37-S1-S55.
In goats, the PIS (polled intersex syndrome) mutation is responsible for both the absence of horns in males and females and sex-reversal affecting exclusively XX individuals. The mode of inheritance is dominant for the polled trait and recessive for sex-reversal. In XX PIS-/- mutants, the expression of testis-specific genes is observed very precociously during gonad development. Nevertheless, a delay of 4-5 days is observed in comparison with normal testis differentiation in XY males. By positional cloning, we demonstrate that the PIS mutation is an 11.7-kb regulatory-deletion affecting the expression of two genes, PISRT1 and FOXL2 which could act synergistically to promote ovarian differentiation. The transcriptional extinction of these two genes leads, very early, to testis-formation in XX homozygous PIS-/- mutants. According to their expression profiles and bibliographic data, we propose that FOXL2 may be an ovary-differentiating gene, and the non-coding RNA PISRT1, an anti-testis factor repressing SOX9, a key regulator of testis differentiation. Under this hypothesis, SRY, the testis-determining factor would inhibit these two genes in the gonads of XY males, to ensure testis differentiation.
在山羊中,无角雌雄间性综合征(PIS)突变导致雄性和雌性均无角,且性反转仅影响XX个体。遗传模式为无角性状显性,性反转隐性。在XX PIS - / - 突变体中,性腺发育期间睾丸特异性基因的表达非常早熟。然而,与XY雄性的正常睾丸分化相比,观察到有4 - 5天的延迟。通过定位克隆,我们证明PIS突变是一个11.7 kb的调控缺失,影响两个基因PISRT1和FOXL2的表达,这两个基因可能协同作用促进卵巢分化。这两个基因的转录缺失很早就导致XX纯合PIS - / - 突变体中睾丸形成。根据它们的表达谱和文献数据,我们提出FOXL2可能是一个卵巢分化基因,而非编码RNA PISRT1是一个抑制SOX9(睾丸分化的关键调节因子)的抗睾丸因子。在这个假设下,睾丸决定因子SRY会在XY雄性的性腺中抑制这两个基因,以确保睾丸分化。