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Genome skimming for plant retrotransposon identification and expression analysis

机译:基因组撇渣用于植物反向转运鉴定和表达分析

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摘要

Retrotransposons (repeated DNA sequences capable of moving across the genome) contribute considerably to the evolution of plant genomes. They are involved in determining variation of genome size, in structuring the chromatin, in altering the regulatory patterns of gene regions, also changing the epigenetic setting of DNA. Sequencing of genomic DNA at low coverage (also called genome skimming) and consequent sequence assembling is a practice that can be used in structural genomics to identify and collect retrotransposon sequences in eukaryotic genomes and to gain insights into plant genome structure and evolution. The replicative mechanism of retrotransposons starts with their transcription. Therefore, it is important to have strategies that allow whole genome analysis of their expression. Besides reporting many studies that use genome skimming and assembling for structural genomics, here we point out the use of genome skimming to produce a whole genome library of these elements, to be used as a reference for analysis of retrotransposon expression in RNA-seq libraries, evidencing pros and cons of such a strategy.
机译:转回横向(能够穿过基因组的重复的DNA序列)促进了植物基因组的演变的显着贡献。它们参与确定基因组大小的变异,在构建染色质中,在改变基因区域的调节模式时,也改变了DNA的表观遗传凝视。基因组DNA的测序在低覆盖下(也称为基因组撇粒)和随之而来的序列组装是可用于结构基因组学的实践,以鉴定真核基因组中的逆转录序列并进入植物基因组结构和进化中的见解。 Retroxposons的复制机制从他们的转录开始。因此,重要的是要具有允许整个基因组分析其表达的策略。除了报告许多使用基因组撇渣和组装结构基因组学的研究外,我们指出了基因组撇粒以产生这些元素的整个基因组文库,用作分析RNA-SEQ库中的转算络表达的参考,证明这种策略的利弊。

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