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Single Locus Maintains Large Variation of Sex Reversal in Half-Smooth Tongue Sole (Cynoglossus semilaevis)

机译:单个位点在半光滑舌头(Cynoglossus semilaevis)的性逆转中保持较大差异

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摘要

Sex determination is a fundamental biological process for individual sex development and population sex ratios. However, for some species, the primary sex might be altered during development, and individuals can develop into the opposite sex. Sex reversal may happen in insects, reptiles, amphibians, and fishes. In half-smooth tongue sole (Cynoglossus semilaevis), some genetically female fish irreversibly reverse to pseudomales, resulting in higher costs in aquaculture owing to a lower growth rate of male fish during a 2-yr growth period. Here, we identified a locus with large controlling effect on sex reversal in the half-smooth tongue sole through genome-wide association study with high-density single nucleotide polymorphisms (SNPs). This SNP is located at the third intron of the F-box and leucine rich repeat protein 17 (FBXL17) gene on the Z chromosome, and it has two alleles, A and T. Genetic females with ZAW genotypes will never reverse into phenotypic males, but those with ZTW genotypes can sometimes undergo sex reversal. This SNP explains 82.7% of the genetic variation, or 58.4% of the phenotypic variation. Based on our results, a reproductive management program could be developed to improve the phenotypic female ratio in aquaculture, and elucidate the mechanism of sex reversal in half-smooth tongue sole. We expect that these findings will have a substantial impact on the population management in many harvested species where sex reversal occurs.
机译:性别确定是个体性别发展和人口性别比的基本生物学过程。但是,对于某些物种,原性可能在发育过程中发生改变,并且个体可以发育成异性。昆虫,爬行动物,两栖动物和鱼类可能发生性逆转。在半光滑的舌(Cynoglossus semilaevis)中,某些遗传上的雌性鱼类不可逆地反转为假雄性,由于在两年的生长期中雄性鱼类的生长速度较低,导致水产养殖成本增加。在这里,我们通过与高密度单核苷酸多态性(SNPs)的全基因组关联研究,确定了对半光滑舌根的性别逆转具有较大控制作用的基因座。该SNP位于Z染色体的F-box和富含亮氨酸的重复蛋白17(FBXL17)基因的第三内含子上,具有两个等位基因A和T。雌性动物,Z A W基因型永远不会逆转成表型男性,但是Z T W基因型的人有时会发生性逆转。该SNP解释了82.7%的遗传变异,或58.4%的表型变异。根据我们的研究结果,可以制定一项生殖管理计划来提高水产养殖中的表型雌性比例,并阐明半光滑舌底的性逆转机制。我们希望这些发现将对发生性别逆转的许多收获物种的种群管理产生重大影响。

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