Frontiers Science Center for Molecular Design Breeding, Key Laboratory of Crop Heterosis and Utilization, Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing 100193, China.
Plant Cell. 2023 May 29;35(6):1848-1867. doi: 10.1093/plcell/koad075.
The dynamics of gene expression in crop grains has typically been investigated at the transcriptional level. However, this approach neglects translational regulation, a widespread mechanism that rapidly modulates gene expression to increase the plasticity of organisms. Here, we performed ribosome profiling and polysome profiling to obtain a comprehensive translatome data set of developing bread wheat (Triticum aestivum) grains. We further investigated the genome-wide translational dynamics during grain development, revealing that the translation of many functional genes is modulated in a stage-specific manner. The unbalanced translation between subgenomes is pervasive, which increases the expression flexibility of allohexaploid wheat. In addition, we uncovered widespread previously unannotated translation events, including upstream open reading frames (uORFs), downstream open reading frames (dORFs), and open reading frames (ORFs) in long noncoding RNAs, and characterized the temporal expression dynamics of small ORFs. We demonstrated that uORFs act as cis-regulatory elements that can repress or even enhance the translation of mRNAs. Gene translation may be combinatorially modulated by uORFs, dORFs, and microRNAs. In summary, our study presents a translatomic resource that provides a comprehensive and detailed overview of the translational regulation in developing bread wheat grains. This resource will facilitate future crop improvements for optimal yield and quality.
作物籽粒中基因表达的动态变化通常在转录水平上进行研究。然而,这种方法忽略了翻译调控,这是一种广泛存在的机制,它可以快速调节基因表达,从而增加生物体的可塑性。在这里,我们进行了核糖体图谱分析和多核糖体图谱分析,以获得发育中的面包小麦(Triticum aestivum)籽粒的综合翻译组数据集。我们进一步研究了谷物发育过程中的全基因组翻译动态变化,揭示了许多功能基因的翻译以特定阶段的方式进行调节。亚基因组之间的不平衡翻译是普遍存在的,这增加了异源六倍体小麦的表达灵活性。此外,我们还发现了广泛的以前未注释的翻译事件,包括上游开放阅读框(uORFs)、下游开放阅读框(dORFs)和长非编码 RNA 中的开放阅读框(ORFs),并对小 ORFs 的时间表达动态进行了表征。我们证明 uORFs 作为顺式调控元件,可以抑制甚至增强 mRNA 的翻译。uORFs、dORFs 和 microRNAs 可以组合调节基因翻译。总之,我们的研究提供了一个翻译组资源,全面详细地概述了发育中的面包小麦籽粒中的翻译调控。该资源将有助于未来的作物改良,以实现最佳产量和质量。