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Mining hidden polymorphic sequence motifs from divergent plant helitrons

机译:从不同植物的直升机上挖掘隐藏的多态序列基序

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摘要

As a major driving force of genome evolution, transposons have been deviating from their original connotation as “junk” DNA ever since their important roles were revealed. The recently discovered Helitron transposons have been investigated in diverse eukaryotic genomes because of their remarkable gene-capture ability and other features that are crucial to our current understanding of genome dynamics. Helitrons are not canonical transposons in that they do not end in inverted repeats or create target site duplications, which makes them difficult to identify. Previous methods mainly rely on sequence alignment of conserved Helitron termini or manual curation. The abundance of Helitrons in genomes is still underestimated. We developed an automated and generalized tool, HelitronScanner, that identified a plethora of divergent Helitrons in many plant genomes. A local combinational variable approach as the key component of HelitronScanner offers a more granular representation of conserved nucleotide combinations and therefore is more sensitive in finding divergent Helitrons. This commentary provides an in-depth view of the local combinational variable approach and its association with Helitron sequence patterns. Analysis of Helitron terminal sequences shows that the local combinational variable approach is an efficacious representation of nucleotide patterns imperceptible at a full-sequence level.
机译:自转座子发挥重要作用以来,作为基因组进化的主要驱动力,就一直偏离其原始概念“垃圾” DNA。最近发现的Helitron转座子已经在各种真核基因组中进行了研究,因为它们具有出色的基因捕获能力和其他特征,这些特征对于我们目前对基因组动力学的理解至关重要。 Helitron不是规范的转座子,因为它们不会以反向重复结尾或不会产生靶位点重复,这使它们难以识别。先前的方法主要依靠保守的Helitron末端的序列比对或手动管理。基因组中Helitron的数量仍然被低估。我们开发了一种自动化的通用工具HelitronScanner,该工具在许多植物基因组中识别出大量不同的Helitron。局部组合变量方法作为HelitronScanner的关键组件,可提供更精细的保守核苷酸组合表示,因此在发现不同的Helitron时更敏感。该评论提供了局部组合变量方法及其与Helitron序列模式的关联的深入视图。对Helitron末端序列的分析表明,局部组合变量方法是在全序列水平上不可感知的核苷酸模式的有效表示。

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