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植物微小RNA鉴定的综合方案

A Comprehensive Prescription for Plant miRNA Identification.

作者信息

Alptekin Burcu, Akpinar Bala A, Budak Hikmet

机构信息

Cereal Genomics Lab, Department of Plant Sciences and Plant Pathology, Montana State University Bozeman, MT, USA.

Sabanci University Nanotechnology Research and Application Centre, Sabanci University Istanbul, Turkey.

出版信息

Front Plant Sci. 2017 Jan 24;7:2058. doi: 10.3389/fpls.2016.02058. eCollection 2016.

Abstract

microRNAs (miRNAs) are tiny ribo-regulatory molecules involved in various essential pathways for persistence of cellular life, such as development, environmental adaptation, and stress response. In recent years, miRNAs have become a major focus in molecular biology because of their functional and diagnostic importance. This interest in miRNA research has resulted in the development of many specific software and pipelines for the identification of miRNAs and their specific targets, which is the key for the elucidation of miRNA-modulated gene expression. While the well-recognized importance of miRNAs in clinical research pushed the emergence of many useful computational identification approaches in animals, available software and pipelines are fewer for plants. Additionally, existing approaches suffers from mis-identification and annotation of plant miRNAs since the miRNA mining process for plants is highly prone to false-positives, particularly in cereals which have a highly repetitive genome. Our group developed a homology-based miRNA identification approach for plants, which utilizes two Perl scripts "SUmirFind" and "SUmirFold" and since then, this method helped identify many miRNAs particularly from crop species such as or . Herein, we describe a comprehensive updated guideline by the implementation of two new scripts, "SUmirPredictor" and "SUmirLocator," and refinements to our previous method in order to identify genuine miRNAs with increased sensitivity in consideration of miRNA identification problems in plants. Recent updates enable our method to provide more reliable and precise results in an automated fashion in addition to solutions for elimination of most false-positive predictions, miRNA naming and miRNA mis-annotation. It also provides a comprehensive view to genome/transcriptome-wide location of miRNA precursors as well as their association with transposable elements. The "SUmirPredictor" and "SUmirLocator" scripts are freely available together with a reference high-confidence plant miRNA list.

摘要

微小RNA(miRNA)是微小的核糖调节分子,参与细胞生命维持的各种基本途径,如发育、环境适应和应激反应。近年来,由于其功能和诊断重要性,miRNA已成为分子生物学的主要研究焦点。对miRNA研究的这种兴趣导致了许多用于鉴定miRNA及其特定靶标的特定软件和流程的开发,这是阐明miRNA调节基因表达的关键。虽然miRNA在临床研究中的公认重要性推动了动物中许多有用的计算鉴定方法的出现,但植物可用的软件和流程较少。此外,现有方法存在植物miRNA误识别和注释的问题,因为植物miRNA挖掘过程极易出现假阳性,特别是在具有高度重复基因组的谷物中。我们小组开发了一种基于同源性的植物miRNA鉴定方法,该方法利用两个Perl脚本“SUmirFind”和“SUmirFold”,从那时起,这种方法帮助鉴定了许多miRNA,特别是来自作物物种,如 或 。在此,我们通过实施两个新脚本“SUmirPredictor”和“SUmirLocator”以及对我们之前方法的改进,描述了一个全面更新的指南,以便在考虑植物miRNA鉴定问题的情况下,以更高的灵敏度鉴定真正的miRNA。最近的更新使我们的方法能够以自动化方式提供更可靠和精确的结果,此外还能解决消除大多数假阳性预测、miRNA命名和miRNA错误注释的问题。它还提供了miRNA前体在全基因组/转录组范围内的位置及其与转座元件关联的全面视图。“SUmirPredictor”和“SUmirLocator”脚本可与参考高置信度植物miRNA列表一起免费获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9301/5258749/454cdaf89553/fpls-07-02058-g0001.jpg

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