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Evolutionary dynamics of retrotransposable elements Rex1, Rex3 and Rex6 in neotropical cichlid genomes

机译:可逆转座子Rex1,Rex3和Rex6在新热带丽鱼科鱼基因组中的进化动力学

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摘要

Background: Transposable elements (TEs) have the potential to produce broad changes in the genomes of their hosts, acting as a type of evolutionary toolbox and generating a collection of new regulatory and coding sequences. Several TE classes have been studied in Neotropical cichlids; however, the information gained from these studies is restricted to the physical chromosome mapping, whereas the genetic diversity of the TEs remains unknown. Therefore, the genomic organization of the non-LTR retrotransposons Rex1, Rex3, and Rex6 in five Amazonian cichlid species was evaluated using physical chromosome mapping and DNA sequencing to provide information about the role of TEs in the evolution of cichlid genomes. Results: Physical mapping revealed abundant TE clusters dispersed throughout the chromosomes. Furthermore, several species showed conspicuous clusters accumulation in the centromeric and terminal portions of the chromosomes. These TE chromosomal sites are associated with both heterochromatic and euchromatic regions. A higher number of Rex1 clusters were observed among the derived species. The Rex1 and Rex3 nucleotide sequences were more conserved in the basal species than in the derived species; however, this pattern was not observed in Rex6. In addition, it was possible to observe conserved blocks corresponding to the reverse transcriptase fragment of the Rex1 and Rex3 clones and to the endonuclease of Rex6. Conclusion: Our data showed no congruence between the Bayesian trees generated for Rex1, Rex3 and Rex6 of cichlid species and phylogenetic hypothesis described for the group. Rex1 and Rex3 nucleotide sequences were more conserved in the basal species whereas Rex6 exhibited high substitution rates in both basal and derived species. The distribution of Rex elements in cichlid genomes suggests that such elements are under the action of evolutionary mechanisms that lead to their accumulation in particular chromosome regions, mostly in heterochromatins. © 2013 Schneider et al.; licensee BioMed Central Ltd.
机译:背景:转座因子(TEs)可能在其宿主基因组中产生广泛的变化,可作为一种进化工具箱,并产生新的调控序列和编码序列。在新热带丽鱼科鱼中研究了几种TE类。然而,从这些研究中获得的信息仅限于物理染色体作图,而TEs的遗传多样性仍然未知。因此,使用物理染色体作图和DNA测序评估了五个亚马孙丽鱼科动物中非LTR反转录转座子Rex1,Rex3和Rex6的基因组组织,以提供有关TE在丽鱼科鱼基因组进化中的作用的信息。结果:物理图谱显示丰富的TE簇分散在整个染色体中。此外,一些物种在染色体的着丝粒和末端部分显示出明显的簇聚集。这些TE染色体位点与异色和常色区都相关。在衍生物种中观察到更多的Rex1簇。 Rex1和Rex3核苷酸序列在基础物种中比在衍生物种中更保守。但是,在Rex6中未观察到此模式。此外,有可能观察到与Rex1和Rex3克隆的逆转录酶片段以及Rex6的核酸内切酶相对应的保守区。结论:我们的数据表明,针对丽鱼科物种Rex1,Rex3和Rex6生成的贝叶斯树与该组描述的系统发育假设之间没有一致性。 Rex1和Rex3核苷酸序列在基础物种中更保守,而Rex6在基础物种和派生物种中均显示出高取代率。 Rex元素在丽鱼科动物的基因组中的分布表明,此类元素处于进化机制的作用下,导致它们在特定的染色体区域(主要是异染色质)中积累。 ©2013 Schneider等;被许可人BioMed Central Ltd.

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