Developmental Biochemistry, Biocenter, University of Wuerzburg, Am Hubland, 97074, Wuerzburg, Germany.
The Xiphophorus Genetic Stock Center, Department of Chemistry and Biochemistry, Texas State University, San Marcos, Texas, TX, 78666, USA.
Sci Rep. 2021 Nov 3;11(1):21544. doi: 10.1038/s41598-021-01066-z.
Arapaima gigas is one of the largest freshwater fish species of high ecological and economic importance. Overfishing and habitat destruction are severe threats to the remaining wild populations. By incorporating a chromosomal Hi-C contact map, we improved the arapaima genome assembly to chromosome-level, revealing an unexpected high degree of chromosome rearrangements during evolution of the bonytongues (Osteoglossiformes). Combining this new assembly with pool-sequencing of male and female genomes, we identified id2bbY, a duplicated copy of the inhibitor of DNA binding 2b (id2b) gene on the Y chromosome as candidate male sex-determining gene. A PCR-test for id2bbY was developed, demonstrating that this gene is a reliable male-specific marker for genotyping. Expression analyses showed that this gene is expressed in juvenile male gonads. Its paralog, id2ba, exhibits a male-biased expression in immature gonads. Transcriptome analyses and protein structure predictions confirm id2bbY as a prime candidate for the master sex-determiner. Acting through the TGFβ signaling pathway, id2bbY from arapaima would provide the first evidence for a link of this family of transcriptional regulators to sex determination. Our study broadens our current understanding about the evolution of sex determination genetic networks and provide a tool for improving arapaima aquaculture for commercial and conservation purposes.
巨骨舌鱼是具有重要生态和经济价值的最大淡水鱼类之一。过度捕捞和栖息地破坏对剩余野生种群构成了严重威胁。通过整合染色体 Hi-C 接触图谱,我们将巨骨舌鱼基因组组装提高到染色体水平,揭示了硬骨舌鱼目(Osteoglossiformes)进化过程中染色体重排的程度之高,令人惊讶。结合这个新的基因组组装和雌雄基因组的池测序,我们鉴定了 id2bbY,它是 Y 染色体上 DNA 结合抑制因子 2b(id2b)基因的重复拷贝,是候选的雄性性别决定基因。我们开发了用于 id2bbY 的 PCR 检测,证明该基因是用于基因分型的可靠的雄性特异性标记。表达分析表明,该基因在幼年雄性性腺中表达。它的同源基因 id2ba 在未成熟的性腺中表现出雄性偏性表达。转录组分析和蛋白质结构预测证实 id2bbY 是主要性别决定因子的首选候选者。id2bbY 通过 TGFβ 信号通路发挥作用,为该转录调节因子家族与性别决定之间的联系提供了第一个证据。我们的研究拓宽了我们对性别决定遗传网络进化的现有认识,并为提高商业和保护目的的巨骨舌鱼养殖提供了工具。