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Simultaneous TE Analysis of 19 Heliconiine Butterflies Yields Novel Insights into Rapid TE-Based Genome Diversification and Multiple SINE Births and Deaths

机译:同时分析19种螺旋藻蝴蝶的TE分析可为基于TE的快速基因组多样化和多个SINE出生与死亡提供新颖的见解

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摘要

Transposable elements (TEs) play major roles in the evolution of genome structure and function. However, because of their repetitive nature, they are difficult to annotate and discovering the specific roles they may play in a lineage can be a daunting task. Heliconiine butterflies are models for the study of multiple evolutionary processes including phenotype evolution and hybridization. We attempted to determine how TEs may play a role in the diversification of genomes within this clade by performing a detailed examination of TE content and accumulation in 19 species whose genomes were recently sequenced. We found that TE content has diverged substantially and rapidly in the time since several subclades shared a common ancestor with each lineage harboring a unique TE repertoire. Several novel SINE lineages have been established that are restricted to a subset of species. Furthermore, the previously described SINE, Metulj, appears to have gone extinct in two subclades while expanding to significant numbers in others. This diversity in TE content and activity has the potential to impact how heliconiine butterflies continue to evolve and diverge.
机译:转座因子(TEs)在基因组结构和功能的进化中起主要作用。但是,由于它们具有重复性,因此难以注释,并且发现它们在世系中可能扮演的特定角色可能是艰巨的任务。螺旋蝴蝶是研究多种进化过程的模型,包括表型进化和杂交。我们试图通过对19个最近对基因组进行测序的物种的TE含量和积累进行详细检查,来确定TE在该进化枝内的基因组多样化中如何发挥作用。我们发现,由于几个子小节共享一个共同的祖先,而每个子句都拥有一个独特的TE曲目,因此TE的内容在当时迅速并迅速地分化了。已经建立了几种新的SINE谱系,它们仅限于物种的子集。此外,先前描述的SINE Metulj在两个子小节中似乎已经灭绝,而在其他子小节中扩展到了很多。 TE含量和活性的这种多样性可能会影响螺旋藻蝴蝶如何继续进化和发散。

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