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XX 无角山羊中雌性向雄性性反转的个体发生

Ontogenesis of female-to-male sex-reversal in XX polled goats.

作者信息

Pailhoux Eric, Vigier Bernard, Vaiman Daniel, Servel Nathalie, Chaffaux Stéphane, Cribiu Edmond P, Cotinot Corinne

机构信息

Laboratoire de Biologie du Développement et Biotechnologies, INRA-Bâtiment J. Poly, 78350 Jouy en Josas, France.

出版信息

Dev Dyn. 2002 May;224(1):39-50. doi: 10.1002/dvdy.10083.

Abstract

The association of polledness and intersexuality in domestic goats (PIS mutation) made them a practical genetic model for studying mammalian female-to-male sex reversal. In this study, gonads from XX sex-reversed goats (PIS-/-) were thoroughly characterized at the molecular and histologic level from the first steps of gonadal differentiation (36 days post coitum [dpc]) to birth. The first histologic signs of gonadal sex reversal were detectable between 36 and 40 dpc (4-5 days later than the XY male) and were mainly characterized by the reduction of the ovarian cortex and the organization of seminiferous cords. As early as 36 dpc, aromatase (CYP19) gene expression was decreased in XX (PIS-/-) gonads, whereas genes normally up-regulated in males, such as SOX9 and AMH, showed an increased expression level from 40 dpc. Thereafter, steroidogenic cell precursors were affected, and at 56 dpc, WNT4 and 3beta-HSD were expressed in a male-specific manner in sex-reversed gonads. Another noticeable feature was a progressive disappearance of germ cells, clearly visible in testicular cords around 70 dpc where 50-75% of germ cells were absent in XX (PIS-/-) gonads. These observations indicated that the causal mutation of PIS acts very early in the sex-determining cascade and affects primarily the supporting cells of the gonad.

摘要

家养山羊中无角与雌雄间性(PIS突变)的关联使其成为研究哺乳动物雌性向雄性性逆转的实用遗传模型。在本研究中,对XX性逆转山羊(PIS-/-)从性腺分化的最初阶段(受孕后36天[dpc])到出生时的性腺进行了分子和组织学水平的全面表征。性腺性逆转的首个组织学迹象在36至40 dpc之间可检测到(比XY雄性晚4 - 5天),主要特征为卵巢皮质减少和曲细精管的形成。早在36 dpc时,XX(PIS-/-)性腺中芳香化酶(CYP19)基因表达就已降低,而通常在雄性中上调的基因,如SOX9和AMH,从40 dpc起表达水平升高。此后,类固醇生成细胞前体受到影响,在56 dpc时,WNT4和3β - HSD在性逆转性腺中以雄性特异性方式表达。另一个显著特征是生殖细胞逐渐消失,在约70 dpc的睾丸索中清晰可见,此时XX(PIS-/-)性腺中50 - 75%的生殖细胞缺失。这些观察结果表明,PIS的致病突变在性别决定级联反应中很早就起作用,并且主要影响性腺的支持细胞。

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