首页> 外文期刊>PLoS Genetics >A Tandem Duplicate of Anti-Müllerian Hormone with a Missense SNP on the Y Chromosome Is Essential for Male Sex Determination in Nile Tilapia, Oreochromis niloticus
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A Tandem Duplicate of Anti-Müllerian Hormone with a Missense SNP on the Y Chromosome Is Essential for Male Sex Determination in Nile Tilapia, Oreochromis niloticus

机译:Y染色体上带有错义SNP的一连串反苗勒激素对尼罗罗非鱼,尼罗罗非鱼的男性性别确定至关重要

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Variation in the TGF-β signaling pathway is emerging as an important mechanism by which gonadal sex determination is controlled in teleosts. Here we show that amhy, a Y-specific duplicate of the anti-Müllerian hormone (amh) gene, induces male sex determination in Nile tilapia. amhy is a tandem duplicate located immediately downstream of amhΔ-y on the Y chromosome. The coding sequence of amhy was identical to the X-linked amh (amh) except a missense SNP (C/T) which changes an amino acid (Ser/Leu92) in the N-terminal region. amhy lacks 5608 bp of promoter sequence that is found in the X-linked amh homolog. The amhΔ-y contains several insertions and deletions in the promoter region, and even a 5 bp insertion in exonVI that results in a premature stop codon and thus a truncated protein product lacking the TGF-β binding domain. Both amhy and amhΔ-y expression is restricted to XY gonads from 5 days after hatching (dah) onwards. CRISPR/Cas9 knockout of amhy in XY fish resulted in male to female sex reversal, while mutation of amhΔ-y alone could not. In contrast, overexpression of Amhy in XX fish, using a fosmid transgene that carries the amhy/amhΔ-y haplotype or a vector containing amhy ORF under the control of CMV promoter, resulted in female to male sex reversal, while overexpression of AmhΔ-y alone in XX fish could not. Knockout of the anti-Müllerian hormone receptor type II (amhrII) in XY fish also resulted in 100% complete male to female sex reversal. Taken together, these results strongly suggest that the duplicated amhy with a missense SNP is the candidate sex determining gene and amhy/amhrII signal is essential for male sex determination in Nile tilapia. These findings highlight the conserved roles of TGF-β signaling pathway in fish sex determination.
机译:TGF-β信号转导途径的变化是控制硬骨鱼性腺性别决定的重要机制。在这里,我们显示amhy(抗苗勒氏激素(amh)基因的Y特异复制品)在尼罗罗非鱼中诱导了雄性性别确定。 amhy是位于Y染色体amhΔ-y下游的串联重复序列。 amhy的编码序列与X连锁的amh(amh)相同,只是错义SNP(C / T)会改变N端区域的氨基酸(Ser / Leu92)。 amhy缺乏在X连锁amh同源物中发现的5608 bp启动子序列。 amhΔ-y在启动子区域包含数个插入和缺失,甚至在外显子VI中包含5 bp插入,这会导致过早的终止密码子,从而导致截短的蛋白产物缺乏TGF-β结合域。从孵化(dah)后的5天开始,amhy和amhΔ-y的表达都限于XY性腺。 XY鱼中amhy的CRISPR / Cas9敲除导致男性至女性的性逆转,而单独的amhΔ-y突变则不能。相反,使用携带amhy /amhΔ-y单倍型的fosmid转基因或在CMV启动子控制下的含有amhy ORF的载体,在XX鱼中过表达Amhy导致雌性至雄性逆转,而AmhΔ-y的过表达XX鱼一个人做不到。 XY鱼中的抗苗勒氏管II型受体(amhrII)敲除也导致100%的男性到女性完全性逆转。综上所述,这些结果强烈表明,带有错义SNP的复制的amhy是候选性别决定基因,而amhy / amhrII信号对于尼罗罗非鱼的男性性别决定至关重要。这些发现突出了TGF-β信号传导途径在鱼类性别决定中的保守作用。

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