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Emerging applications of read profiles towards the functional annotation of the genome

机译:读图谱在基因组功能注释方面的新兴应用

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摘要

Functional annotation of the genome is important to understand the phenotypic complexity of various species. The road toward functional annotation involves several challenges ranging from experiments on individual molecules to large-scale analysis of high-throughput sequencing (HTS) data. HTS data is typically a result of the protocol designed to address specific research questions. The sequencing results in reads, which when mapped to a reference genome often leads to the formation of distinct patterns (read profiles). Interpretation of these read profiles is essential for their analysis in relation to the research question addressed. Several strategies have been employed at varying levels of abstraction ranging from a somewhat ad hoc to a more systematic analysis of read profiles. These include methods which can compare read profiles, e.g., from direct (non-sequence based) alignments to classification of patterns into functional groups. In this review, we highlight the emerging applications of read profiles for the annotation of non-coding RNA and cis-regulatory elements (CREs) such as enhancers and promoters. We also discuss the biological rationale behind their formation.
机译:基因组的功能注释对于理解各种物种的表型复杂性很重要。走向功能注释的道路涉及从单分子实验到高通量测序(HTS)数据的大规模分析等一系列挑战。 HTS数据通常是旨在解决特定研究问题的协议的结果。测序产生读数,当将其定位到参考基因组时,通常会导致形成独特的模式(读数谱)。这些阅读资料的解释对于与所研究问题相关的分析至关重要。从不同程度的抽象到对读配置文件的更系统的分析,已经在不同的抽象级别采用了几种策略。这些包括可以比较读谱的方法,例如,从直接(基于非序列)比对到将模式分类成功能组的方法。在这篇综述中,我们重点介绍了阅读概况在非编码RNA和顺式调节元件(CRE)(例如增强子和启动子)的注释中的新兴应用。我们还将讨论其形成背后的生物学原理。

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