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XY C57BL/6与XY FVB/N嵌合小鼠种系中的极端偏差。

An extreme bias in the germ line of XY C57BL/6<->XY FVB/N chimaeric mice.

作者信息

MacGregor G R

机构信息

Center for Molecular Medicine, Emory University School of Medicine, Atlanta, GA 30322, USA.

出版信息

Reproduction. 2002 Sep;124(3):377-86. doi: 10.1530/rep.0.1240377.

Abstract

Chimaeric analysis is a powerful method to address questions about the cell-autonomous nature of defects in spermatogenesis. Symplastic spermatids (sys) mice have a recessive mutation that causes male sterility due to an arrest in germ-cell development during spermiogenesis. Chimaeric mice were generated by aggregation of eight-cell embryos from sys (FVB/N genetic background) and wild-type C57BL/6 (B6) mice to determine whether the male germ-cell defect is cell-autonomous. The resulting FVB/N<->B6 chimaeras (<-> denotes fusion of embryos) were mated with FVB/N mice and coat colour of offspring was used to identify transmission of FVB/N or B6 gametes. Regardless of the relative contribution of B6 to somatic tissues of the chimaeras, almost all (282 of 284; 99.3%) offspring of B6 XY<->XY FVB/N (+/+ or sys/+) males (n = 9) received a FVB/N-derived paternal gamete. After mating of female B6<->FVB/N chimaeras, 51 of 73 (69.9%) offspring received an FVB-derived maternal gamete. Southern blot analysis of different tissues from chimaeric males indicated that, despite the presence of balanced chimaerism in somatic tissues, the germ line in B6 XY<->XY FVB/N mice was essentially FVB/N in composition. Thus there is a strong selective advantage for FVB/N male germ cells over B6 male germ cells in B6<->FVB/N-aggregation chimaeras at some stage during development of the male germ line. Each of three male chimaeras that were either B6 XY<->XY FVB/N (sys/sys) or B6 XX<->XY FVB/N (sys/sys) in composition was sterile, and testis histology was essentially sysmutant. This finding indicates that the function of the gene(s) affected in the sys mutation may be required in the testis, although whether expression is required in germ cells, somatic cells or both remains unknown. The extreme bias in transmission of male gametes has implications for experimental design in studies that use chimaeric analysis to address questions regarding the cell-autonomous nature of germ-cell defects in mice.

摘要

嵌合体分析是一种强大的方法,可用于解决有关精子发生缺陷的细胞自主性问题。共生型精子细胞(sys)小鼠有一个隐性突变,该突变会导致雄性不育,原因是精子发生过程中生殖细胞发育停滞。通过将sys(FVB/N遗传背景)和野生型C57BL/6(B6)小鼠的八细胞胚胎聚集,生成嵌合体小鼠,以确定雄性生殖细胞缺陷是否具有细胞自主性。将产生的FVB/N<->B6嵌合体(<->表示胚胎融合)与FVB/N小鼠交配,并利用后代的毛色来确定FVB/N或B6配子的传递情况。无论B6对嵌合体体细胞组织的相对贡献如何,B6 XY<->XY FVB/N(+/+或sys/+)雄性(n = 9)的几乎所有后代(284只中的282只;99.3%)都接受了来自FVB/N的父本配子。雌性B6<->FVB/N嵌合体交配后,73只后代中有51只(69.9%)接受了来自FVB的母本配子。对嵌合体雄性不同组织的Southern印迹分析表明,尽管体细胞组织中存在平衡嵌合现象,但B6 XY<->XY FVB/N小鼠生殖系的组成基本上是FVB/N。因此,在雄性生殖系发育的某个阶段,在B6<->FVB/N聚集嵌合体中,FVB/N雄性生殖细胞相对于B6雄性生殖细胞具有很强的选择优势。组成上为B6 XY<->XY FVB/N(sys/sys)或B6 XX<->XY FVB/N(sys/sys)的三只雄性嵌合体均不育,睾丸组织学检查基本为sys突变型。这一发现表明,sys突变中受影响的基因功能可能在睾丸中是必需的,尽管该基因在生殖细胞、体细胞中是否表达或两者都需要表达仍不清楚。雄配子传递的极端偏差对使用嵌合体分析来解决小鼠生殖细胞缺陷的细胞自主性问题的研究中的实验设计具有重要意义

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