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Integrating networks and comparative genomics reveals retroelement proliferation dynamics in hominid genomes

机译:整合网络和比较基因组学揭示了原始人基因组中逆转录因子的增殖动态

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摘要

Retroelements (REs) are mobile DNA sequences that multiply and spread throughout genomes by a copy-and-paste mechanism. These parasitic elements are active in diverse genomes, from yeast to humans, where they promote diversity, cause disease, and accelerate evolution. Because of their high copy number and sequence similarity, studying their activity and tracking their proliferation dynamics is a challenge. It is particularly difficult to pinpoint the few REs in a genome that are still active in the haystack of degenerate and suppressed elements. We develop a computational framework based on network theory that tracks the path of RE proliferation throughout evolution. We analyze SVA (SINE-VNTR-Alu), the youngest RE family in human genomes, to understand RE dynamics across hominids. Integrating comparative genomics and network tools enables us to track the course of SVA proliferation, identify yet unknown active communities, and detect tentative “master REs” that played key roles in SVA propagation, providing strong support for the fundamental “master gene” model of RE proliferation. The method is generic and thus can be applied to REs of any of the thousands of available genomes to identify active RE communities and master REs that were pivotal in the evolution of their host genomes.
机译:Retroelements(RE)是可移动的DNA序列,通过复制和粘贴机制在整个基因组中繁殖和扩散。这些寄生元件在从酵母到人类的各种基因组中均具有活性,它们可促进多样性,引起疾病并加速进化。由于它们的高拷贝数和序列相似性,研究其活性和追踪其增殖动力学是一个挑战。查明基因组中仍然在简并和抑制元件的大海捞针中活跃的少数RE尤其困难。我们基于网络理论开发了一个计算框架,该框架跟踪了RE在整个进化过程中的增殖路径。我们分析了人类基因组中最年轻的RE家族SVA(SINE-VNTR-Alu),以了解人类之间的RE动态。整合比较基因组学和网络工具,使我们能够追踪SVA扩散的过程,识别尚未发现的活跃社区,并检测在SVA传播中起关键作用的暂定“主要RE”,从而为RE的基本“主要基因”模型提供了有力的支持增殖。该方法是通用的,因此可以应用于数千个可用基因组中的任何一个的RE,以鉴定活跃的RE群落和掌握在其宿主基因组进化中至关重要的RE。

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