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Next-generation DNA sequencing of paired-end tags (PET) for transcriptome and genome analyses

机译:配对末端标签(PET)的下一代DNA测序用于转录组和基因组分析

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摘要

Comprehensive understanding of functional elements in the human genome will require thorough interrogation and comparison of individual human genomes and genomic structures. Such an endeavor will require improvements in the throughputs and costs of DNA sequencing. Next-generation sequencing platforms have impressively low costs and high throughputs but are limited by short read lengths. An immediate and widely recognized solution to this critical limitation is the paired-end tag (PET) sequencing for various applications, collectively called the PET sequencing strategy, in which short and paired tags are extracted from the ends of long DNA fragments for ultra-high-throughput sequencing. The PET sequences can be accurately mapped to the reference genome, thus demarcating the genomic boundaries of PET-represented DNA fragments and revealing the identities of the target DNA elements. PET protocols have been developed for the analyses of transcriptomes, transcription factor binding sites, epigenetic sites such as histone modification sites, and genome structures. The exclusive advantage of the PET technology is its ability to uncover linkages between the two ends of DNA fragments. Using this unique feature, unconventional fusion transcripts, genome structural variations, and even molecular interactions between distant genomic elements can be unraveled by PET analysis. Extensive use of PET data could lead to efficient assembly of individual human genomes, transcriptomes, and interactomes, enabling new biological and clinical insights. With its versatile and powerful nature for DNA analysis, the PET sequencing strategy has a bright future ahead.
机译:要全面了解人类基因组中的功能元件,就需要对各个人类基因组和基因组结构进行彻底的询问和比较。这种努力将需要提高DNA测序的通量和成本。下一代测序平台的成本低,通量高,但读取长度短。解决此关键局限性的一种直接且广泛认可的解决方案是针对各种应用的配对末端标签(PET)测序,统称为PET测序策略,其中从长DNA片段的末端提取短标签和配对标签以实现超高通量排序。 PET序列可以准确地定位到参考基因组,从而划分PET代表的DNA片段的基因组边界,并揭示靶DNA元件的身份。已开发出PET方案,用于分析转录组,转录因子结合位点,表观遗传位点(例如组蛋白修饰位点)和基因组结构。 PET技术的独家优势在于它能够揭示DNA片段两端之间的联系。利用这一独特功能,可以通过PET分析来揭示非常规的融合转录本,基因组结构变异,甚至遥远的基因组元素之间的分子相互作用。广泛使用PET数据可以有效地组装单个人类基因组,转录组和相互作用组,从而获得新的生物学和临床见解。凭借其强大的DNA分析功能,PET测序策略具有广阔的前景。

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