Institute of Science and Technology, Niigata University, Niigata, Japan.
Heredity (Edinb). 2010 Sep;105(3):247-56. doi: 10.1038/hdy.2009.174. Epub 2009 Dec 9.
Chromosomal sex determination is widely used by vertebrates, however, only two genes have been identified as master sex-determining genes: SRY/Sry in mammals and DMY in the teleost medaka. Transfer of both genes into genetically female (XX) individuals can induce male development. However, transgenic strains have not been established in both cases because of infertility of the transgenic founders in mammals and low germline transmission rates in medaka. In this study, we used a BAC clone containing DMY in a 117 kb genomic region and two types of fluorescent marker to establish two DMY-transgenic medaka strains. In these strains, exogenous DMY is completely linked to a male phenotype and early gonadal development is not different from that of the wild-type strain. Sex-linkage analysis showed that the exogenous DMY was located on linkage group (LG) 23 in one strain and on LG 5 in the other strain, whereas the sex chromosome in medaka is on LG 1. Real-time PCR analysis indicated that these strains have multiple copies of DMY and higher DMY expression levels than the wild-type strain. These results showed that LGs 23 and 5 function as sex chromosomes in the two strains, respectively. This is not only the first example of the artificial generation of heritable sex chromosomes in vertebrates but also the first evidence showing plasticity of homomorphic sex chromosomes. This plasticity appears to be a characteristic of lower vertebrates and the underlying cause of frequent sex chromosome switching, recently reported in several fish and frog species.
性染色体决定广泛存在于脊椎动物中,然而,仅有两个基因被鉴定为主要的性别决定基因:哺乳动物中的 SRY/Sry 和硬骨鱼中的 DMY。将这两个基因都转移到遗传上的雌性(XX)个体中,可以诱导雄性发育。然而,在这两种情况下,都没有建立转基因品系,因为哺乳动物中的转基因品系的创始者不育,以及硬骨鱼中的生殖系传递率低。在本研究中,我们使用了一个包含 DMY 的 BAC 克隆,该克隆位于 117 kb 的基因组区域中,并且带有两种类型的荧光标记,以建立两个 DMY 转基因斑马鱼品系。在外源 DMY 完全与雄性表型相关联的这些品系中,早期性腺发育与野生型品系没有不同。性连锁分析表明,外源 DMY 位于一个品系的第 23 号连锁群(LG)上,而在另一个品系中位于第 5 号 LG 上,而在斑马鱼中,性染色体位于第 1 号 LG 上。实时 PCR 分析表明,这些品系具有多个 DMY 拷贝,并且 DMY 的表达水平高于野生型品系。这些结果表明,LG 23 和 5 分别在两个品系中作为性染色体发挥作用。这不仅是首次在脊椎动物中人工产生可遗传的性染色体的例子,也是首次表明同源性染色体具有可塑性的证据。这种可塑性似乎是低等脊椎动物的特征,也是最近在几种鱼类和青蛙物种中报道的频繁性染色体转换的潜在原因。