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The hotei mutation of medaka in the anti-Müllerian hormone receptor causes the dysregulation of germ cell and sexual development

机译:抗苗勒氏管激素受体中的medaka的hotei突变导致生殖细胞失调和性发育

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摘要

We previously performed mutant screens in the medaka for defects in gonadal development and identified a mutant of interest in this regard, which was designated as hotei (hot). This mutant manifests a number of remarkable phenotypic abnormalities including: (i) excessive proliferation of germ cells that initiates at around the hatching stage regardless of the genetic sex of the fish; (ii) initiation of premature meiosis in phenotypically male hot homozygotes; (iii) one-half of the hot-homozygous XY fish undergo sex reversal, which accompanies the expression of the female-characteristic aromatase gene in the somatic cells of the gonad; and (iv) in phenotypically female homozygotes, follicular development is arrested at an early stage. We have also performed genetic mapping, chromosome walking, and candidate gene sequencing analysis of hot and demonstrate that the underlying mutation occurs in the recently identified medaka anti-Müllerian hormone (Amh) receptor type II (amhrII) gene. Moreover, this gene was found to be responsible for each of the hot phenotypes, as an amhrII transgene rescues these abnormalities. In addition, the amhrII gene is expressed in the somatic cells of the gonads of both sexes. The phenotypes of the hot homozygotes indicate that there are multiple regulatory functions of the AMH/AMHRII signaling system in the development of the gonad, including the sex-dependent regulation of germ cell proliferation and follicular development. These presumably represent the basic roles of Amh, which precede Müllerian duct evolution during phylogeny.
机译:我们以前在medaka中进行了性腺发育缺陷的突变体筛选,并在这方面确定了一个感兴趣的突变体,将其命名为hotei(热)。该突变体表现出许多显着的表型异常,包括:(i)生殖细胞的过度增殖,这种繁殖在孵化阶段左右开始,而与鱼类的遗传性别无关; (ii)在表型上为雄性热纯合子的过早减数分裂的启动; (iii)一半的热纯合XY鱼发生性逆转,伴随着性腺体细胞中雌性特征的芳香化酶基因的表达; (iv)在表型上是女性纯合子,卵泡发育在早期被阻止。我们还对热点进行了遗传定位,染色体行走和候选基因测序分析,并证明了潜在的突变发生在最近鉴定的medaka抗苗勒激素(Amh)II型受体(amhrII)基因中。此外,发现该基因与每种热表型有关,因为amhrII转基因可以挽救这些异常。另外,amhrII基因在男女性腺的体细胞中表达。热纯合子的表型表明,在性腺发育中,AMH / AMHRII信号系统具有多种调控功能,包括生殖细胞增殖和卵泡发育的性别依赖性调控。这些大概代表了Amh的基本作用,它在系统发育过程中先于Müllerian导管进化。

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