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Review Article Unraveling long non-coding RNAs through analysis of high-throughput RNA-sequencing data

机译:评论文章通过分析高通量RNA测序数据揭示长的非编码RNA

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Extensive genome-wide transcriptome study mediated by high throughput sequencing technique has revolutionized the study of genetics and epigenetic at unprecedented resolution. The research has revealed that besides protein-coding RNAs, large proportions of mammalian transcriptome includes a heap of regulatory non protein-coding RNAs, the number encoded within human genome is enigmatic. Many taboos developed in the past categorized these non-coding RNAs as ‘‘dark matter” and “junks”. Breaking the myth, RNA-seq -- a recently developed experimental technique is widely being used for studying non-coding RNAs which has acquired the limelight due to their physiological and pathological significance. The longest member of the ncRNA family-- long non-coding RNAs , acts as stable and functional part of a genome, guiding towards the important clues about the varied biological events like cellular-, structural- processes governing the complexity of an organism. Here, we review the most recent and influential computational approach developed to identify and quantify the long non-coding RNAs serving as an assistant for the users to choose appropriate tools for their specific research.
机译:高通量测序技术介导的广泛的全基因组转录组研究,以前所未有的分辨率彻底颠覆了遗传学和表观遗传学的研究。研究表明,除了编码蛋白质的RNA外,很大一部分哺乳动物转录组还包括大量的非编码调控RNA,人类基因组中编码的数目是难以理解的。过去开发的许多禁忌将这些非编码RNA归类为“暗物质”和“垃圾”。打破神话的RNA序列-一种最近开发的实验技术被广泛用于研究非编码RNA,由于其生理和病理学意义,这种非编码RNA已引起人们的关注。 ncRNA家族中最长的成员-长的非编码RNAs充当基因组的稳定和功能部分,可指导有关各种生物事件(例如控制生物体复杂性的细胞,结构过程)的重要线索。在这里,我们回顾了为识别和量化长的非编码RNA而开发的最新且有影响力的计算方法,该RNA可以帮助用户为特定研究选择合适的工具。

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