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性二型现象与 gsdf 作为大西洋比目鱼新型性别决定基因的确立。

Heterochiasmy and the establishment of gsdf as a novel sex determining gene in Atlantic halibut.

机构信息

Institute of Marine Research, Bergen, Norway.

Uppsala University, Uppsala, Sweden.

出版信息

PLoS Genet. 2022 Feb 8;18(2):e1010011. doi: 10.1371/journal.pgen.1010011. eCollection 2022 Feb.

Abstract

Atlantic Halibut (Hippoglossus hippoglossus) has a X/Y genetic sex determination system, but the sex determining factor is not known. We produced a high-quality genome assembly from a male and identified parts of chromosome 13 as the Y chromosome due to sequence divergence between sexes and segregation of sex genotypes in pedigrees. Linkage analysis revealed that all chromosomes exhibit heterochiasmy, i.e. male-only and female-only meiotic recombination regions (MRR/FRR). We show that FRR/MRR intervals differ in nucleotide diversity and repeat class content and that this is true also for other Pleuronectidae species. We further show that remnants of a Gypsy-like transposable element insertion on chr13 promotes early male specific expression of gonadal somatic cell derived factor (gsdf). Less than 4.5 MYA, this male-determining element evolved on an autosomal FRR segment featuring pre-existing male meiotic recombination barriers, thereby creating a Y chromosome. Our findings indicate that heterochiasmy may facilitate the evolution of genetic sex determination systems relying on linkage of sexually antagonistic loci to a sex-determining factor.

摘要

大比目鱼(Hippoglossus hippoglossus)具有 X/Y 遗传性别决定系统,但性别决定因素尚不清楚。我们从雄性中产生了高质量的基因组组装,并由于性别之间的序列差异和家系中性别基因型的分离,将第 13 号染色体的部分鉴定为 Y 染色体。连锁分析表明,所有染色体都表现出异质染色质,即仅雄性和仅雌性减数分裂重组区(MRR/FRR)。我们表明,FRR/MRR 间隔在核苷酸多样性和重复类内容上存在差异,这在其他比目鱼科物种中也是如此。我们进一步表明,chr13 上一个类似于 Gypsy 的转座元件插入的残余物促进了性腺体细胞衍生因子(gsdf)的早期雄性特异性表达。不到 4.5 MYA,这个决定雄性的元素在具有预先存在的雄性减数分裂重组障碍的常染色体 FRR 片段上进化,从而创建了一个 Y 染色体。我们的研究结果表明,异质染色质可能促进了依赖于与性别决定因子连锁的性拮抗基因座的遗传性别决定系统的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6414/8824383/576ea44361c5/pgen.1010011.g001.jpg

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