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在间质性端粒序列中位于同一位置的hAT转座元件和5S核糖体DNA表明甲鲶中罗伯逊融合的形成。

Co-located hAT transposable element and 5S rDNA in an interstitial telomeric sequence suggest the formation of Robertsonian fusion in armored catfish.

作者信息

Glugoski Larissa, Giuliano-Caetano Lucia, Moreira-Filho Orlando, Vicari Marcelo R, Nogaroto Viviane

机构信息

Departamento de Biologia Estrutural, Molecular e Genética, Universidade Estadual de Ponta Grossa, Av. Carlos Cavalcanti, 4748, Ponta Grossa, Paraná 84030-900, Brazil.

Departamento de Biologia Geral, Universidade Estadual de Londrina, Rod. Celso Garcia Cid, Pr 445 Km 380, Londrina, PR 86057-970, Brazil.

出版信息

Gene. 2018 Apr 15;650:49-54. doi: 10.1016/j.gene.2018.01.099. Epub 2018 Feb 1.

Abstract

Co-located 5S rDNA genes and interstitial telomeric sites (ITS) revealed the involvement of multiple 5S rDNA clusters in chromosome rearrangements of Loricariidae. Interstitial (TTAGGG)n vestiges, in addition to telomeric sites, can coincide with locations of chromosomal rearrangements, and they are considered to be hotspots for chromosome breaks. This study aimed the molecular characterization of 5S rDNA in two Rineloricaria latirostris populations and examination of roles of 5S rDNA in breakpoint sites and its in situ localization. Rineloricaria latirostris from Brazil's Das Pedras river (2n = 46 chromosomes) presented five pairs identified using a 5S rDNA probe, in addition to a pair bearing a co-located ITS/5S rDNA. Rineloricaria latirostris from the Piumhi river (2n = 48 chromosomes) revealed two pairs containing 5S rDNA, without ITS. A 702-bp amplified sequence, using 5S rDNA primers, revealed an insertion of the hAT transposable element (TE), referred to as a degenerate 5S rDNA. Double-FISH (fluorescence in situ hybridization) demonstrated co-localization of 5S rDNA/degenerate 5S rDNA, 5S rDNA/hAT and ITS/5S rDNA from the Das Pedras river population. Piumhi river isolates possessed only 5S rDNA sites. We suggest that the degenerate 5S rDNA was generated by unequal crossing over, which was driven by invasion of hAT, establishing a breakpoint region susceptible to chromosome breakage, non-homologous recombination and Robertsonian (Rb) fusion. Furthermore, the presence of clusters of 5S rDNA at fusion points in other armored catfish species suggests its re-use and that these regions represent hotspots for evolutionary rearrangements within Loricariidae genomes.

摘要

共定位的5S rDNA基因和间质端粒位点(ITS)揭示了多个5S rDNA簇参与了甲鲶科的染色体重排。除端粒位点外,间质(TTAGGG)n遗迹可能与染色体重排位置重合,它们被认为是染色体断裂的热点。本研究旨在对两个宽吻斜项鲶种群的5S rDNA进行分子特征分析,并研究5S rDNA在断点位置的作用及其原位定位。来自巴西达斯佩德拉斯河的宽吻斜项鲶(2n = 46条染色体)除了一对带有共定位的ITS/5S rDNA外,使用5S rDNA探针鉴定出五对。来自皮乌姆希河的宽吻斜项鲶(2n = 48条染色体)显示有两对含有5S rDNA,但没有ITS。使用5S rDNA引物扩增出的一段702 bp序列显示插入了hAT转座元件(TE),即所谓的退化5S rDNA。双色荧光原位杂交(Double-FISH)显示了来自达斯佩德拉斯河种群的5S rDNA/退化5S rDNA、5S rDNA/hAT和ITS/5S rDNA的共定位。皮乌姆希河分离株仅拥有5S rDNA位点。我们认为,退化5S rDNA是由不等交换产生的,这是由hAT的侵入驱动的,从而建立了一个易发生染色体断裂、非同源重组和罗伯逊(Rb)融合的断点区域。此外,在其他甲鲶物种的融合点处存在5S rDNA簇,这表明它被再次利用,并且这些区域代表了甲鲶科基因组内进化重排的热点。

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