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The role of transposable elements in functional evolution of amphioxus genome: the case of opsin gene family

机译:转座因子在文昌鱼基因组功能进化中的作用:视蛋白基因家族的情况

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Transposable elements (TEs) are able to jump to new locations (transposition) in the genome, usually after replication. They constitute the so-called selfish or junk DNA and take over large proportions of some genomes. Due to their ability to move around they can change the DNA landscape of genomes and are therefore a rich source of innovation in genes and gene regulation. Surge of sequence data in the past years has significantly facilitated large scale comparative studies. Cephalochordates have been regarded as a useful proxy to ancestral chordate condition partially due to the comparatively slow evolutionary rate at morphological and genomic level. In this study, we used opsin gene family from three Branchiostoma species as a window into cephalochordate genome evolution. We compared opsin complements in terms of family size, gene structure and sequence allowing us to identify gene duplication and gene loss events. Furthermore, analysis of the opsin containing genomic loci showed that they are populated by TEs. In summary, we provide evidence of the way transposable elements may have contributed to the evolution of opsin gene family and to the shaping of cephalochordate genomes in general.
机译:通常在复制后,转座因子(TEs)能够跳到基因组中的新位置(转座)。它们构成了所谓的自私或垃圾DNA,并占据了大部分基因组。由于它们的移动能力,它们可以改变基因组的DNA格局,因此是基因和基因调控方面丰富的创新来源。过去几年中,序列数据的激增极大地促进了大规模的比较研究。由于在形态学和基因组水平上相对较慢的进化速度,头孢类被认为是祖传cho酸盐病的有用替代物。在这项研究中,我们使用了来自三种分支肉瘤的视蛋白基因家族,作为进入头草酸盐基因组进化的窗口。我们根据家族大小,基因结构和序列比较视蛋白补体,从而可以鉴定基因重复和基因丢失事件。此外,对包含视蛋白的基因组基因座的分析表明它们由TE组成。总而言之,我们提供了转座因子可能对视蛋白基因家族的进化以及一般头孢菌素基因组的形成有贡献的证据。

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