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The miRNA-Mediated Post-Transcriptional Regulation of Maize in Response to High Temperature

机译:miRNA介导的玉米对高温的转录后调控

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摘要

High temperature (HT) has recently become one of the most important abiotic stresses restricting crop production worldwide. MicroRNAs (miRNAs) are important regulators in plant development and stress responses. However, knowledge of miRNAs of maize in response to HT is limited. In this study, we simultaneously adopted miRNA sequencing and transcriptome profiling to analyze the differential expression of miRNAs and mRNAs in maize during exposure to HT stress. Our analysis revealed 61 known miRNAs belonging to 26 miRNA families and 42 novel miRNAs showing significant differential expression, with the majority being downregulated. Meanwhile, the expression of 5450 mRNAs was significantly altered in the same stressed tissues. Differentially expressed transcripts were most significantly associated with response to stress, photosynthesis, biosynthesis of secondary metabolites, and signal transduction pathways. In addition, we discovered 129 miRNA–mRNA pairs that were regulated antagonistically, and further depiction of the targeted mRNAs indicated that several transcription factors, protein kinases, and receptor-like-protein-related transmembrane transport and signaling transduction were profoundly affected. This study has identified potential key regulators of HT-stress response in maize and the subset of genes that are likely to be post-transcriptionally regulated by miRNAs under HT stress.
机译:高温(HT)最近已成为限制全球农作物产量的最重要的非生物胁迫之一。微小RNA(miRNA)是植物发育和胁迫响应的重要调节剂。然而,对玉米响应HT的miRNA的了解是有限的。在这项研究中,我们同时采用miRNA测序和转录组分析来分析暴露于HT胁迫下玉米中miRNA和mRNA的差异表达。我们的分析揭示了属于26个miRNA家族的61个已知miRNA和显示出显着差异表达的42个新miRNA,其中大多数被下调。同时,在相同压力的组织中5450 mRNA的表达显着改变。差异表达的转录本与应激,光合作用,次生代谢产物的生物合成和信号转导途径的反应最显着相关。此外,我们发现了129个受拮抗作用的miRNA-mRNA对,对目标mRNA的进一步描述表明,一些转录因子,蛋白激酶以及受体样蛋白相关的跨膜转运和信号转导受到了深远的影响。这项研究已经确定了玉米中HT胁迫反应的潜在关键调控因子以及在HT胁迫下可能由miRNA转录后调控的基因子集。

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