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首页> 外文期刊>African journal of medicine and medical sciences. >Transposable elements in the genomes: parasites, junks or drivers of evolution?
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Transposable elements in the genomes: parasites, junks or drivers of evolution?

机译:基因组中的可转换元素:寄生虫,录音或进化司机?

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摘要

In many organisms with large and complex genomes, transposable elements (TEs) constitute up to 50 % of the genomic DNA. TEs have been widely studied and they showed high similarities across kingdoms. Several reasons have been adduced for the diverse TEs among plants and animal species. Activities of TEs could give rise to altered gene or genome at very high frequencies in both germinal and somatic tissues. TE-induced genetic variability can range widely; from changes in the arrangement of the whole genome to changes in single nucleotides. This may produce major effects on the phenotypic traits or small silent changes detectable only at the DNA sequence level. TE-induced mutation in the regulatory sequences may be of evolutionary significance and insertions in promoter sequences can alter tissue-specific patterns of gene expression. In addition, transposons can be involved in amplification and dispersal of genes by taking up portions of other sequences within the TEs themselves, moving them to new locations, thereby increasing their copy number. Therefore, mobilization of TEs might benefit the host through enhancement of genetic diversity. However, TE movement have been linked with undesirable traits in plants, hybrid dysgenesis in Drosophila and genome instability and diseases in mammals. This review summarises the diversity of TEs across plant and animal kingdoms and their impact and possible role in genomic evolution. It also describes some adverse effects of TEs as agents of genomic instability and diseases such as cancers, and the genetic regulations of their activities.
机译:在许多具有大型和复杂基因组的生物中,转换元素(TES)占Genomic DNA的50%。 TES已被广泛研究,他们在跨国范围内显示出高度相似之处。为植物和动物物种之间的不同TES引起了几种原因。 TES的活动可以在发芽和体细胞组织的非常高的频率下产生改变基因或基因组。 TE诱导的遗传变异可以广泛的范围;从整个基因组排列到单核苷酸变化的变化。这可能对仅在DNA序列水平可检测到的表型性状或小静音变化产生重大影响。调节序列中的TE诱导的突变可以是进化的意义和启动子序列中的插入可以改变基因表达的组织特异性模式。此外,转座子可以通过占据在特色内的其他序列的部分,将它们移动到新位置来涉及基因的扩增和分散,从而增加它们的拷贝数。因此,通过提高遗传多样性,调动TES可能会使主人受益。然而,TE运动与植物中的不希望的特征有关,果蝇中的杂交功能和哺乳动物的基因组不稳定性和疾病。本综述总结了跨植物和动物界的TES的多样性及其在基因组进化中的影响和可能的作用。它还描述了TES作为基因组不稳定性和疾病的药物的一些不利影响,以及癌症的疾病以及其活动的遗传法规。

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