State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, College of Horticulture, South China Agricultural University, Guangzhou 510640, China; Guangdong Laboratory for Lingnan Modern Agriculture, South China Agricultural University, Guangzhou 510640, China; Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in South China, Ministry of Agriculture and Rural Affairs, South China Agricultural University, Guangzhou 510640, China.
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, College of Horticulture, South China Agricultural University, Guangzhou 510640, China; Guangdong Laboratory for Lingnan Modern Agriculture, South China Agricultural University, Guangzhou 510640, China; Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in South China, Ministry of Agriculture and Rural Affairs, South China Agricultural University, Guangzhou 510640, China.
Sci Bull (Beijing). 2024 Mar 30;69(6):784-791. doi: 10.1016/j.scib.2023.12.049. Epub 2023 Dec 29.
Small RNAs (sRNAs), found extensively in plants, play an essential role in plant growth and development. Although various sRNA analysis tools have been developed for plants, the use of most of them depends on programming and command-line environments, which is a challenge for many wet-lab biologists. Furthermore, current sRNA analysis tools mostly focus on the analysis of certain type of sRNAs and are resource-intensive, normally demanding an immense amount of time and effort to learn the use of numerous tools or scripts and assemble them into a workable pipeline to get the final results. Here, we present sRNAminer, a powerful stand-alone toolkit with a user-friendly interface that integrates all common functions for the analysis of three major types of plant sRNAs: microRNAs (miRNAs), phased small interfering RNAs (phasiRNAs), and heterochromatic siRNAs (hc-siRNAs). We constructed a curated or "golden" set of MIRNA and PHAS loci, which was used to assess the performance of sRNAminer in comparison to other existing tools. The results showed that sRNAminer outperformed these tools in multiple aspects, highlighting its functionality. In addition, to enable an efficient evaluation of sRNA annotation results, we developed Integrative Genomics Viewer (IGV)-sRNA, a modified genome browser optimized from IGV and we incorporated it as a functional module in sRNAminer. IGV-sRNA can display a wealth of sRNA-specific features, enabling a more comprehensive understanding of sRNA data. sRNAminer and IGV-sRNA are both platform-independent software that can be run under all operating systems. They are now freely available at https://github.com/kli28/sRNAminer and https://gitee.com/CJchen/IGV-sRNA.
小 RNA(sRNA)广泛存在于植物中,在植物生长发育中起着至关重要的作用。虽然已经开发了各种用于植物的 sRNA 分析工具,但它们中的大多数都依赖于编程和命令行环境,这对于许多湿实验室生物学家来说是一个挑战。此外,目前的 sRNA 分析工具主要侧重于某些类型的 sRNA 的分析,并且资源密集型,通常需要大量的时间和精力来学习使用众多工具或脚本,并将它们组装成一个可行的管道,以获得最终结果。在这里,我们介绍 sRNAminer,这是一个功能强大的独立工具包,具有用户友好的界面,集成了用于分析三种主要类型植物 sRNA 的所有常见功能:microRNAs(miRNAs)、相吻合的小干扰 RNA(phasiRNAs)和异染色质 siRNA(hc-siRNAs)。我们构建了一个经过精心整理或“黄金”的 MIRNA 和 PHAS 基因座集合,用于评估 sRNAminer 与其他现有工具相比的性能。结果表明,sRNAminer 在多个方面都优于这些工具,突出了其功能。此外,为了实现 sRNA 注释结果的有效评估,我们开发了 Integrative Genomics Viewer(IGV)-sRNA,这是一个从 IGV 优化而来的修改后的基因组浏览器,并将其作为 sRNAminer 的一个功能模块合并进去。IGV-sRNA 可以显示大量的 sRNA 特定特征,从而更全面地理解 sRNA 数据。sRNAminer 和 IGV-sRNA 都是独立于平台的软件,可以在所有操作系统下运行。它们现在可以在 https://github.com/kli28/sRNAminer 和 https://gitee.com/CJchen/IGV-sRNA 上免费获得。