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Comparative Study of Pine Reference Genomes Reveals Transposable Element Interconnected Gene Networks

机译:松树参考基因组的比较研究揭示了转换元素互联基因网络

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摘要

Sequencing the giga-genomes of several pine species has enabled comparative genomic analyses of these outcrossing tree species. Previous studies have revealed the wide distribution and extraordinary diversity of transposable elements (TEs) that occupy the large intergenic spaces in conifer genomes. In this study, we analyzed the distribution of TEs in gene regions of the assembled genomes of Pinus taeda and Pinus lambertiana using high-performance computing resources. The quality of draft genomes and the genome annotation have significant consequences for the investigation of TEs and these aspects are discussed. Several TE families frequently inserted into genes or their flanks were identified in both species’ genomes. Potentially important sequence motifs were identified in TEs that could bind additional regulatory factors, promoting gene network formation with faster or enhanced transcription initiation. Node genes that contain many TEs were observed in multiple potential transposable element-associated networks. This study demonstrated the increased accumulation of TEs in the introns of stress-responsive genes of pines and suggests the possibility of rewiring them into responsive networks and sub-networks interconnected with node genes containing multiple TEs. Many such regulatory influences could lead to the adaptive environmental response clines that are characteristic of naturally spread pine populations.
机译:测序几种杉木物种的千兆基因组使得这些侧面的树木物种的比较基因组分析能够。以前的研究揭示了可转换元素(TES)的广泛分布和非凡多样性,其占据针叶树基因组中的大型基因间空间。在这项研究中,我们使用高性能计算资源分析了Pinus Taeda和Pinus Lambertiana的组装基因组的基因区域中TES的分布。草案基因组和基因组注释的质量对TES的调查具有显着的后果,并且讨论了这些方面。在两个种类的基因组中鉴定了经常插入基因或其侧面的几个TE系列。在可以结合额外的调节因素的TES中鉴定出潜在的重要序列基序,以更快或增强的转录启动促进基因网络形成。在多个潜在的转换元件相关网络中观察到包含许多TES的节点基因。本研究表明,在松性的应激响应基因的内含子内增加了TES的增加,并提示将它们重新加入到敏感网络和子网中与含有多个TES的节点基因相互连接的子网。许多这样的监管影响可能导致自然蔓延的松树种群的特征的适应性环境反应围绕。

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