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Comparative genome analysis of 52 fish species suggests differential associations of repetitive elements with their living aquatic environments

机译:对52种鱼类的基因组比较分析表明,重复元素与其生存水生环境之间存在差异关联

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Repetitive elements make up significant proportions of genomes. However, their roles in evolution remain largely unknown. To provide insights into the roles of repetitive elements in fish genomes, we conducted a comparative analysis of repetitive elements of 52 fish species in 22 orders in relation to their living aquatic environments. The proportions of repetitive elements in various genomes were found to be positively correlated with genome sizes, with a few exceptions. More importantly, there appeared to be specific enrichment between some repetitive element categories with species habitat. Specifically, class II transposons appear to be more abundant in freshwater bony fish than in marine bony fish when phylogenetic relationship is not considered. In contrast, marine bony fish harbor more tandem repeats than freshwater species. In addition, class I transposons appear to be more abundant in primitive species such as cartilaginous fish and lamprey than in bony fish. The enriched association of specific categories of repetitive elements with fish habitats suggests the importance of repetitive elements in genome evolution and their potential roles in fish adaptation to their living environments. However, due to the restriction of the limited sequenced species, further analysis needs to be done to alleviate the phylogenetic biases.
机译:重复元件占基因组的很大比例。但是,它们在进化中的作用仍然未知。为了提供有关重复元素在鱼类基因组中的作用的见解,我们对22种鱼类的52种鱼类的重复元素进行了相对于其生存水生环境的比较分析。除少数例外,发现各种基因组中重复元件的比例与基因组大小呈正相关。更重要的是,某些重复元素类别与物种栖息地之间似乎存在特定的富集。具体而言,当不考虑系统发育关系时,II类转座子似乎在淡水骨鱼中比海洋骨鱼中含量更高。相比之下,海洋骨鱼类比淡水鱼类拥有更多的串联重复序列。此外,与软骨鱼类相比,软骨鱼类和七lamp鳗等原始物种的I类转座子似乎更为丰富。特定种类的重复元素与鱼类栖息地的丰富联系表明,重复元素在基因组进化中的重要性及其在鱼类适应其生存环境中的潜在作用。然而,由于有限的测序物种的限制,需要做进一步的分析以减轻系统发育偏见。

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