Multi-genome comparisons reveal gain-and-loss evolution of anti-Mullerian hormone receptor type 2 as a candidate master sex-determining gene in Percidae.

IF 4.4 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2024-06-26 DOI:10.1186/s12915-024-01935-9
Heiner Kuhl, Peter T Euclide, Christophe Klopp, Cédric Cabau, Margot Zahm, Céline Lopez-Roques, Carole Iampietro, Claire Kuchly, Cécile Donnadieu, Romain Feron, Hugues Parrinello, Charles Poncet, Lydia Jaffrelo, Carole Confolent, Ming Wen, Amaury Herpin, Elodie Jouanno, Anastasia Bestin, Pierrick Haffray, Romain Morvezen, Taina Rocha de Almeida, Thomas Lecocq, Bérénice Schaerlinger, Dominique Chardard, Daniel Żarski, Wesley A Larson, John H Postlethwait, Serik Timirkhanov, Werner Kloas, Sven Wuertz, Matthias Stöck, Yann Guiguen
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Abstract

Background: The Percidae family comprises many fish species of major importance for aquaculture and fisheries. Based on three new chromosome-scale assemblies in Perca fluviatilis, Perca schrenkii, and Sander vitreus along with additional percid fish reference genomes, we provide an evolutionary and comparative genomic analysis of their sex-determination systems.

Results: We explored the fate of a duplicated anti-Mullerian hormone receptor type-2 gene (amhr2bY), previously suggested to be the master sex-determining (MSD) gene in P. flavescens. Phylogenetically related and structurally similar amhr2 duplicates (amhr2b) were found in P. schrenkii and Sander lucioperca, potentially dating this duplication event to their last common ancestor around 19-27 Mya. In P. fluviatilis and S. vitreus, this amhr2b duplicate has been likely lost while it was subject to amplification in S. lucioperca. Analyses of the amhr2b locus in P. schrenkii suggest that this duplication could be also male-specific as it is in P. flavescens. In P. fluviatilis, a relatively small (100 kb) non-recombinant sex-determining region (SDR) was characterized on chromosome 18 using population-genomics approaches. This SDR is characterized by many male-specific single-nucleotide variations (SNVs) and no large duplication/insertion event, suggesting that P. fluviatilis has a male heterogametic sex-determination system (XX/XY), generated by allelic diversification. This SDR contains six annotated genes, including three (c18h1orf198, hsdl1, tbc1d32) with higher expression in the testis than in the ovary.

Conclusions: Together, our results provide a new example of the highly dynamic sex chromosome turnover in teleosts and provide new genomic resources for Percidae, including sex-genotyping tools for all three known Perca species.

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多基因组比较揭示了作为鲈科候选性别决定主基因的抗苗勒氏激素受体 2 型的损益进化。
背景:鲈科包括许多对水产养殖和渔业具有重要意义的鱼类物种。基于鲈鱼、石首鲈和桑德鲈的三个新染色体组以及其他鲈科鱼类的参考基因组,我们对它们的性别决定系统进行了进化和比较基因组分析:结果:我们探讨了重复的抗苗勒氏激素受体2型基因(amhr2bY)的命运,该基因之前被认为是P. flavescens的主性别决定(MSD)基因。在P. schrenkii和Sander lucioperca中发现了系统发育相关且结构相似的amhr2重复基因(amhr2b),有可能将这一重复事件追溯到19-27 Mya左右的最后共同祖先。在P. fluviatilis和S. vitreus中,这个amhr2b重复序列很可能已经丢失,而在S. lucioperca中,这个重复序列则被扩增。对 P. schrenkii 中 amhr2b 基因座的分析表明,该重复位点也可能具有雄性特异性,就像在 P. flavescens 中一样。在 P. fluviatilis 中,利用种群基因组学方法确定了 18 号染色体上一个相对较小(100 kb)的非重复性决定区(SDR)的特征。该SDR具有许多雄性特异性单核苷酸变异(SNV),但没有大的重复/插入事件,这表明P. fluviatilis具有雄性异配性别决定系统(XX/XXY),由等位基因多样化产生。该性别决定系统包含六个注释基因,其中三个(c18h1orf198、hsdl1、tbc1d32)在睾丸中的表达量高于卵巢:总之,我们的研究结果为长尾目动物性染色体的高度动态更替提供了一个新的实例,并为鲈形目动物提供了新的基因组资源,包括所有三个已知鲈形目物种的性别基因分型工具。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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