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违背主流:三鳍鲷科和脂鲤科鱼类(硬骨鱼纲:脂鲤目)的 ZW 性染色体具有非凡的进化稳定性。

Against the mainstream: exceptional evolutionary stability of ZW sex chromosomes across the fish families Triportheidae and Gasteropelecidae (Teleostei: Characiformes).

机构信息

Departamento de Genética e Evolução, Universidade Federal de São Carlos, Rod. Washington Luiz km 235, Sao Carlos, SP, 13565-905, Brazil.

Laboratory of Fish Genetics, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Rumburská 89, Libechov, 277 21, Czech Republic.

出版信息

Chromosome Res. 2021 Dec;29(3-4):391-416. doi: 10.1007/s10577-021-09674-1. Epub 2021 Oct 25.

Abstract

Teleost fishes exhibit a breath-taking diversity of sex determination and differentiation mechanisms. They encompass at least nine sex chromosome systems with often low degree of differentiation, high rate of inter- and intra-specific variability, and frequent turnovers. Nevertheless, several mainly female heterogametic systems at an advanced stage of genetic differentiation and high evolutionary stability have been also found across teleosts, especially among Neotropical characiforms. In this study, we aim to characterize the ZZ/ZW sex chromosome system in representatives of the Triportheidae family (Triportheus auritus, Agoniates halecinus, and the basal-most species Lignobrycon myersi) and its sister clade Gasteropelecidae (Carnegiella strigata, Gasteropelecus levis, and Thoracocharax stellatus). We applied both conventional and molecular cytogenetic approaches including chromosomal mapping of 5S and 18S ribosomal DNA clusters, cross-species chromosome painting (Zoo-FISH) with sex chromosome-derived probes and comparative genomic hybridization (CGH). We identified the ZW sex chromosome system for the first time in A. halecinus and G. levis and also in C. strigata formerly reported to lack sex chromosomes. We also brought evidence for possible mechanisms underlying the sex chromosome differentiation, including inversions, repetitive DNA accumulation, and exchange of genetic material. Our Zoo-FISH experiments further strongly indicated that the ZW sex chromosomes of Triportheidae and Gasteropelecidae are homeologous, suggesting their origin before the split of these lineages (approx. 40-70 million years ago). Such extent of sex chromosome stability is almost exceptional in teleosts, and hence, these lineages afford a special opportunity to scrutinize unique evolutionary forces and pressures shaping sex chromosome evolution in fishes and vertebrates in general.

摘要

硬骨鱼类表现出令人惊叹的性别决定和分化机制多样性。它们至少包含九个性染色体系统,通常分化程度低、种内和种间变异性高、且频繁发生倒位。然而,在硬骨鱼类中也发现了几个主要为雌性异配型的系统,处于遗传分化的高级阶段,具有较高的进化稳定性,尤其是在新热带脂鲤目中。在这项研究中,我们旨在描述三须鲇科(Triportheus auritus、Agoniates halecinus 和最基础的物种 Lignobrycon myersi)及其姐妹科腹盔鱼科(Carnegiella strigata、Gasteropelecus levis 和 Thoracocharax stellatus)的 ZZ/ZW 性染色体系统。我们应用了常规和分子细胞遗传学方法,包括 5S 和 18S 核糖体 DNA 簇的染色体定位、性染色体衍生探针的种间染色体杂交(Zoo-FISH)和比较基因组杂交(CGH)。我们首次在 A. halecinus 和 G. levis 以及先前报道缺乏性染色体的 C. strigata 中鉴定出 ZW 性染色体系统。我们还提供了可能导致性染色体分化的机制的证据,包括倒位、重复 DNA 积累和遗传物质交换。我们的 Zoo-FISH 实验进一步强烈表明,三须鲇科和腹盔鱼科的 ZW 性染色体是同源的,这表明它们在这些谱系分裂之前(约 40-7000 万年前)就已经存在。这种程度的性染色体稳定性在硬骨鱼类中几乎是罕见的,因此,这些谱系为研究塑造鱼类和一般脊椎动物性染色体进化的独特进化力量和压力提供了一个特殊机会。

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