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抗缪勒氏管激素(amh)和抗缪勒氏管激素II型受体(amhrII)在硬骨鱼青鳉中的差异表达。

Differential expression of anti-Müllerian hormone (amh) and anti-Müllerian hormone receptor type II (amhrII) in the teleost medaka.

作者信息

Klüver Nils, Pfennig Frank, Pala Irene, Storch Katja, Schlieder Marlen, Froschauer Alexander, Gutzeit Herwig O, Schartl Manfred

机构信息

University of Würzburg, Department of Physiological Chemistry I, Biozentrum, Würzburg, Germany.

出版信息

Dev Dyn. 2007 Jan;236(1):271-81. doi: 10.1002/dvdy.20997.

Abstract

In mammals, the anti-Müllerian hormone (Amh) is responsible for the regression of the Müllerian ducts; therefore, Amh is an important factor of male sex differentiation. The amh gene has been cloned in various vertebrates, as well as in several teleost species. To date, all described species show a sexually dimorphic expression of amh during sex differentiation or at least in differentiated juvenile gonads. We have identified the medaka amh ortholog and examined its expression pattern. Medaka amh shows no sexually dimorphic expression pattern. It is expressed in both developing XY male and XX female gonads. In adult testes, amh is expressed in the Sertoli cells and in adult ovaries in granulosa cells surrounding the oocytes, like in mammals. To better understand the function of amh, we cloned the anti-Müllerian hormone receptor type II (amhrII) ortholog and compared its expression pattern with amh, aromatase (cyp19a1), and scp3. During gonad development, amhrII is coexpressed with medaka amh in somatic cells of the gonads and shows no sexually dimorphic expression. Only the expression level of the Amh type II receptor gene was decreased noticeably in adult female gonads. These results suggest that medaka Amh and AmhrII are involved in gonad formation and maintenance in both sexes.

摘要

在哺乳动物中,抗苗勒管激素(Amh)负责苗勒管的退化;因此,Amh是雄性性别分化的一个重要因素。amh基因已在各种脊椎动物以及几种硬骨鱼物种中被克隆。迄今为止,所有已描述的物种在性别分化期间或至少在分化的幼年性腺中都显示出amh的性二态性表达。我们已经鉴定出青鳉的amh直系同源基因并研究了其表达模式。青鳉的amh没有显示出性二态性表达模式。它在发育中的XY雄性和XX雌性性腺中均有表达。在成年睾丸中,amh在支持细胞中表达,在成年卵巢中,amh在卵母细胞周围的颗粒细胞中表达,这与哺乳动物的情况类似。为了更好地理解amh的功能,我们克隆了抗苗勒管激素II型受体(amhrII)的直系同源基因,并将其表达模式与amh、芳香化酶(cyp19a1)和scp3进行了比较。在性腺发育过程中,amhrII与青鳉的amh在性腺的体细胞中共表达,并且没有显示出性二态性表达。只有Amh II型受体基因的表达水平在成年雌性性腺中明显降低。这些结果表明,青鳉的Amh和AmhrII参与了两性性腺的形成和维持。

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