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追踪鱼类性染色体的进化途径:表征马拉巴霍氏脂鲤(硬骨鱼纲,脂鲤目)独特的XX/XYY系统。

Tracking the evolutionary pathway of sex chromosomes among fishes: characterizing the unique XX/XYY system in Hoplias malabaricus (Teleostei, Characiformes).

作者信息

de Oliveira Ezequiel Aguiar, Sember Alexandr, Bertollo Luiz Antonio Carlos, Yano Cassia Fernanda, Ezaz Tariq, Moreira-Filho Orlando, Hatanaka Terumi, Trifonov Vladimir, Liehr Thomas, Al-Rikabi Ahmed Basheer Hamid, Ráb Petr, Pains Hugmar, Cioffi Marcelo de Bello

机构信息

Departamento de Genética e Evolução, Universidade Federal de São Carlos, São Carlos, SP, Brazil.

Secretaria de Estado de Educação de Mato Grosso - SEDUC-MT, Cuiabá, MT, Brazil.

出版信息

Chromosoma. 2018 Mar;127(1):115-128. doi: 10.1007/s00412-017-0648-3. Epub 2017 Nov 9.

Abstract

The Neotropical fish, Hoplias malabaricus, is one of the most cytogenetically studied fish taxon with seven distinct karyomorphs (A-G) comprising varying degrees of sex chromosome differentiation, ranging from homomorphic to highly differentiated simple and multiple sex chromosomes. Therefore, this fish offers a unique opportunity to track evolutionary mechanisms standing behind the sex chromosome evolution and differentiation. Here, we focused on a high-resolution cytogenetic characterization of the unique XX/XYY multiple sex chromosome system found in one of its karyomorphs (G). For this, we applied a suite of conventional (Giemsa-staining, C-banding) and molecular cytogenetic approaches, including fluorescence in situ hybridization FISH (with 5S and 18S rDNAs, 10 microsatellite motifs and telomeric (TTAGGG) sequences as probes), comparative genomic hybridization (CGH), and whole chromosome painting (WCP). In addition, we performed comparative analyses with other Erythrinidae species to discover the evolutionary origin of this unique karyomorph G-specific XYY multiple sex chromosome system. WCP experiments confirmed the homology between these multiple sex chromosomes and the nascent XX/XY sex system found in the karyomorph F, but disproved a homology with those of karyomorphs A-D and other closely related species. Besides, the putative origin of such XYY system by rearrangements of several chromosome pairs from an ancestral karyotype was also highlighted. In addition, clear identification of a male-specific region on the Y chromosome suggested a differential pattern of repetitive sequences accumulation. The present data suggested the origin of this unique XYY sex system, revealing evidences for the high level of plasticity of sex chromosome differentiation within the Erythrinidae.

摘要

新热带鱼霍氏红狼牙鰕虎鱼(Hoplias malabaricus)是细胞遗传学研究最多的鱼类分类群之一,有七种不同的核型(A - G),包括不同程度的性染色体分化,从同形到高度分化的简单和多重性染色体。因此,这种鱼为追踪性染色体进化和分化背后的进化机制提供了独特的机会。在这里,我们专注于对其一种核型(G)中发现的独特XX/XYY多重性染色体系统进行高分辨率细胞遗传学表征。为此,我们应用了一系列传统(吉姆萨染色、C带)和分子细胞遗传学方法,包括荧光原位杂交FISH(以5S和18S rDNA、10个微卫星基序和端粒(TTAGGG)序列作为探针)、比较基因组杂交(CGH)和全染色体涂染(WCP)。此外,我们与其他红牙鱚科物种进行了比较分析,以发现这种独特的核型G特异性XYY多重性染色体系统的进化起源。WCP实验证实了这些多重性染色体与核型F中发现的新生XX/XY性系统之间的同源性,但否定了与核型A - D以及其他近缘物种的同源性。此外,还强调了这种XYY系统可能是由祖先核型的几个染色体对重排而来。此外,在Y染色体上明确鉴定出一个雄性特异性区域,表明重复序列积累的模式存在差异。目前的数据表明了这种独特的XYY性系统的起源,揭示了红牙鱚科中性染色体分化具有高度可塑性的证据。

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