Advances in Transcriptome Analyses Using RNA Sequencing Technology in Soybean Plants [Glycine max]

J. Min, Mykaela Wagner, Theoni Kasamias
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引用次数: 1

Abstract

Soybean [Glycine max] is an important oil and food plant for both humans and animals. Recent development in RNA sequencing (RNA-seq) technology provides a cost effective approach to analyzing transcriptomes of plants at different developmental stages and in responses to different biotic and abiotic challenges. Currently there are over 5 000 RNA-seq datasets in soybean plants publicly available at SRA database in the National Center for Biotechnology Information (NCBI). Such a large number of RNA-seq datasets provide soybean researchers an opportunity as well as a challenge for fully exploring the data to understand soybean biology. A number of research articles have been published on applications of RNA-seq in transcriptome analysis of soybean plants, covering a wide range of topics including growth and development, plant mineral nutrients, responses to environmental stresses, pathogens and pests. In this work we compile and review recent advances of RNA-seq transcriptome analyses including profiling of differential gene expression, gene alternative splicing, and gene regulatory networks in soybean plants, with key findings excerpted from each individual published article.
基于RNA测序技术的大豆转录组分析进展[Glycine max]
大豆(Glycine max)是一种重要的人畜油脂和食用植物。RNA测序(RNA-seq)技术的最新发展为分析植物在不同发育阶段和应对不同生物和非生物挑战的转录组提供了一种经济有效的方法。目前,在美国国家生物技术信息中心(NCBI)的SRA数据库中有5000多个公开的大豆植物RNA-seq数据集。如此大量的RNA-seq数据集为大豆研究人员提供了充分挖掘数据以了解大豆生物学的机会和挑战。RNA-seq在大豆转录组分析中的应用已经发表了大量的研究文章,涵盖了大豆生长发育、植物矿质营养、对环境胁迫的反应、病原体和害虫等广泛的主题。在这项工作中,我们汇编和回顾了RNA-seq转录组分析的最新进展,包括大豆植物的差异基因表达谱,基因选择性剪接和基因调控网络,并摘录了每篇发表的文章的主要发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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