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Retrotransposon BARE-1 and Its Role in Genome Evolution in the Genus Hordeum.

机译:反转录转座子BARE-1及其在大麦属基因组进化中的作用。

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摘要

The replicative retrotransposon life cycle offers the potential for explosive increases in copy number and consequent inflation of genome size. The BARE-1 retrotransposon family of barley is conserved, disperse, and transcriptionally active. To assess the role of BARE-1 in genome evolution, we determined the copy number of its integrase, its reverse transcriptase, and its long terminal repeat (LTR) domains throughout the genus Hordeum. On average, BARE-1 contributes 13.7 x 10(3) full-length copies, amounting to 2.9% of the genome. The number increases with genome size. Two LTRs are associated with each internal domain in intact retrotransposons, but surprisingly, BARE-1 LTRs were considerably more prevalent than would be expected from the numbers of intact elements. The excess in LTRs increases as both genome size and BARE-1 genomic fraction decrease. Intrachromosomal homologous recombination between LTRs could explain the excess, removing BARE-1 elements and leaving behind solo LTRs, thereby reducing the complement of functional retrotransposons in the genome and providing at least a partial "return ticket from genomic obesity."
机译:复制性反转录转座子的生命周期提供了潜在的拷贝数爆炸性增长以及随后基因组大小膨胀的潜力。大麦的BARE-1逆转座子家族是保守的,分散的和转录活跃的。为了评估BARE-1在基因组进化中的作用,我们确定了大麦属中其整合酶,其逆转录酶及其长末端重复(LTR)域的拷贝数。平均而言,BARE-1贡献了13.7 x 10(3)个全长拷贝,占基因组的2.9%。该数目随基因组大小而增加。完整的逆转录转座子中的每个内部结构域均与两个LTR相关,但令人惊讶的是,BARE-1 LTR的普遍程度远高于完整元件的数量。 LTR的过量随着基因组大小和BARE-1基因组分数的减少而增加。 LTR之间的染色体内同源重组可以解释过量现象,除去BARE-1元件并留下单独的LTR,从而减少基因组中功能性反转录转座子的互补,并至少提供了部分“来自基因组肥胖的返程票”。

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