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字里行间的解读:RNA测序数据挖掘揭示水稻叶片转录组对热胁迫的另类信息

Reading between the Lines: RNA-seq Data Mining Reveals the Alternative Message of the Rice Leaf Transcriptome in Response to Heat Stress.

作者信息

Vitoriano Charles Barros, Calixto Cristiane Paula Gomes

机构信息

Department of Botany, Institute of Biosciences, University of São Paulo, Sao Paulo 05508-090, SP, Brazil.

出版信息

Plants (Basel). 2021 Aug 11;10(8):1647. doi: 10.3390/plants10081647.

Abstract

Rice ( L.) is a major food crop but heat stress affects its yield and grain quality. To identify mechanistic solutions to improve rice yield under rising temperatures, molecular responses of thermotolerance must be understood. Transcriptional and post-transcriptional controls are involved in a wide range of plant environmental responses. Alternative splicing (AS), in particular, is a widespread mechanism impacting the stress defence in plants but it has been completely overlooked in rice genome-wide heat stress studies. In this context, we carried out a robust data mining of publicly available RNA-seq datasets to investigate the extension of heat-induced AS in rice leaves. For this, datasets of interest were subjected to filtering and quality control, followed by accurate transcript-specific quantifications. Powerful differential gene expression (DE) and differential AS (DAS) identified 17,143 and 2162 heat response genes, respectively, many of which are novel. Detailed analysis of DAS genes coding for key regulators of gene expression suggests that AS helps shape transcriptome and proteome diversity in response to heat. The knowledge resulting from this study confirmed a widespread transcriptional and post-transcriptional response to heat stress in plants, and it provided novel candidates for rapidly advancing rice breeding in response to climate change.

摘要

水稻(Oryza sativa L.)是一种主要的粮食作物,但热胁迫会影响其产量和籽粒品质。为了确定在气温上升情况下提高水稻产量的机制性解决方案,必须了解耐热性的分子反应。转录和转录后调控参与了植物对多种环境的反应。特别是可变剪接(AS),是一种广泛存在的影响植物胁迫防御的机制,但在水稻全基因组热胁迫研究中却被完全忽视。在此背景下,我们对公开可用的RNA测序数据集进行了全面的数据挖掘,以研究水稻叶片中热诱导AS的扩展情况。为此,对感兴趣的数据集进行了筛选和质量控制,随后进行了准确的转录本特异性定量分析。强大的差异基因表达(DE)和差异可变剪接(DAS)分别鉴定出17143个和2162个热响应基因,其中许多是新发现的。对编码基因表达关键调控因子的DAS基因进行详细分析表明,AS有助于塑造转录组和蛋白质组的多样性以应对热胁迫。这项研究所得出的知识证实了植物对热胁迫存在广泛的转录和转录后反应,并为应对气候变化快速推进水稻育种提供了新的候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86c9/8400768/465f1a1e8eab/plants-10-01647-g001.jpg

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