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骨形态发生蛋白受体-IB的突变与布鲁拉美利奴母羊排卵率增加有关。

Mutation in bone morphogenetic protein receptor-IB is associated with increased ovulation rate in Booroola Mérino ewes.

作者信息

Mulsant P, Lecerf F, Fabre S, Schibler L, Monget P, Lanneluc I, Pisselet C, Riquet J, Monniaux D, Callebaut I, Cribiu E, Thimonier J, Teyssier J, Bodin L, Cognié Y, Chitour N, Elsen J M

机构信息

Institut National de la Recherche Agronomique, Laboratoire de Génétique Cellulaire, BP, 27, 31326 Castanet-Tolosan, France.

出版信息

Proc Natl Acad Sci U S A. 2001 Apr 24;98(9):5104-9. doi: 10.1073/pnas.091577598.

Abstract

Ewes from the Booroola strain of Australian Mérino sheep are characterized by high ovulation rate and litter size. This phenotype is due to the action of the FecB(B) allele of a major gene named FecB, as determined by statistical analysis of phenotypic data. By genetic analysis of 31 informative half-sib families from heterozygous sires, we showed that the FecB locus is situated in the region of ovine chromosome 6 corresponding to the human chromosome 4q22-23 that contains the bone morphogenetic protein receptor IB (BMPR-IB) gene encoding a member of the transforming growth factor-beta (TGF-beta) receptor family. A nonconservative substitution (Q249R) in the BMPR-IB coding sequence was found to be associated fully with the hyperprolificacy phenotype of Booroola ewes. In vitro, ovarian granulosa cells from FecB(B)/FecB(B) ewes were less responsive than granulosa cells from FecB(+)/FecB(+) ewes to the inhibitory effect on steroidogenesis of GDF-5 and BMP-4, natural ligands of BMPR-IB. It is suggested that in FecB(B)/FecB(B) ewes, BMPR-IB would be inactivated partially, leading to an advanced differentiation of granulosa cells and an advanced maturation of ovulatory follicles.

摘要

澳大利亚美利奴羊布鲁拉品系的母羊具有排卵率高和产仔数多的特点。通过对表型数据的统计分析确定,这种表型是由一个名为FecB的主基因的FecB(B)等位基因作用所致。通过对来自杂合子父本的31个信息丰富的半同胞家系进行遗传分析,我们发现FecB基因座位于绵羊6号染色体上与人类4号染色体q22 - 23相对应的区域,该区域包含编码转化生长因子-β (TGF-β)受体家族成员的骨形态发生蛋白受体IB (BMPR-IB)基因。在BMPR-IB编码序列中发现的一个非保守性替换(Q249R)与布鲁拉母羊的高产仔数表型完全相关。在体外,FecB(B)/FecB(B)母羊的卵巢颗粒细胞对BMPR-IB的天然配体GDF-5和BMP-4对类固醇生成的抑制作用的反应比FecB(+)/FecB(+)母羊的颗粒细胞弱。有人提出,在FecB(B)/FecB(B)母羊中,BMPR-IB会部分失活,导致颗粒细胞提前分化和排卵卵泡提前成熟。

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