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Construction and Characterization of a Repetitive DNA Library in Parodontidae (Actinopterygii: Characiformes): A Genomic and Evolutionary Approach to the Degeneration of the W Sex Chromosome

机译:虎牙亚科(Actinopterygii:Characiformes)中重复DNA文库的构建和表征:W性染色体变性的基因组学和进化方法。

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摘要

Repetitive DNA sequences, including tandem and dispersed repeats, comprise a large portion of eukaryotic genomes and are important for gene regulation, sex chromosome differentiation, and karyotype evolution. In Parodontidae, only the repetitive DNAs WAp and pPh2004 and rDNAs were previously studied using fluorescence in situ hybridization. This study aimed to build a library of repetitive DNA in Parodontidae. We isolated 40 clones using Cot-1; 17 of these clones exhibited similarity to repetitive DNA sequences, including satellites, minisatellites, microsatellites, and class I and class II transposable elements (TEs), from Danio rerio and other organisms. The physical mapping of the clones to chromosomes revealed the presence of a satellite DNA, a Helitron element, and degenerate short interspersed element (SINE), long interspersed element (LINE), and tc1-mariner elements on the sex chromosomes. Some clones exhibited dispersed signals; other sequences were not detected. The 5S rDNA was detected on an autosomal pair. These elements likely function in the molecular degeneration of the W chromosome in Parodontidae. Thus, the location of these elements on the chromosomes is important for understanding the function of these repetitive DNAs and for integrative studies with genome sequencing. The presented data demonstrate that an intensive invasion of TEs occurred during W sex chromosome differentiation in the Parodontidae.
机译:重复的DNA序列(包括串联重复序列和分散的重复序列)构成了大部分的真核基因组,对于基因调节,性染色体分化和核型进化非常重要。在腮腺科中,以前仅使用荧光原位杂交研究了重复性DNA WAp和pPh2004和rDNA。这项研究的目的是在巨蜥科中建立一个重复DNA文库。我们使用Cot-1分离了40个克隆。这些克隆中的17个与重复的DNA序列具有相似性,包括来自Danio rerio和其他生物的卫星,小卫星,微卫星以及I类和II类转座因子(TE)。克隆到染色体的物理作图揭示了性染色体上存在卫星DNA,Helitron元件和简并的短散布元素(SINE),长散布元素(LINE)和tc1-mariner元素。一些克隆表现出分散的信号。未检测到其他序列。在常染色体对上检测到5S rDNA。这些元素可能在Parodontidae W染色体的分子变性中起作用。因此,这些元件在染色体上的位置对于理解这些重复DNA的功能以及与基因组测序的整合研究非常重要。呈现的数据表明,在腮腺科的W性染色体分化过程中发生了TEs的强烈入侵。

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