State Key Laboratory of Crop Stress Biology in Arid Areas, College of Agronomy, Northwest A&F University, Xianyang 712100, China.
College of Life Science, Jiangxi Agricultural University, Nanchang 330045, China.
Int J Mol Sci. 2022 Jul 20;23(14):7982. doi: 10.3390/ijms23147982.
RNA/DNA difference (RDD) is a post-transcriptional modification playing a crucial role in regulating diverse biological processes in eukaryotes. Although it has been extensively studied in plant chloroplast and mitochondria genomes, RDDs in plant nuclear genomes are not well studied at present. Here, we investigated the RDDs associated with fusarium head blight (FHB) through a novel method by comparing the RNA-seq data between Fusarium-infected and control samples of four wheat genotypes. A total of 187 high-confidence unique RDDs in 36 genes were identified, representing the first landscape of the FHB-responsive RDD in wheat. The majority (26) of these 36 RDD genes were correlated either positively or negatively with FHB levels. Effects of these RDDs on RNA and protein sequences have been identified, their editing frequency and the expression level of the corresponding genes provided, and the prediction of the effect on the minimum folding free energy of mRNA, miRNA binding, and colocation of RDDs with conserved domains presented. RDDs were predicted to induce modifications in the mRNA and protein structures of the corresponding genes. In two genes, TraesCS1B02G294300 and TraesCS3A02G263900, editing was predicted to enhance their affinity with and , respectively. To our knowledge, this study is the first report of the association between RDD and FHB in wheat; this will contribute to a better understanding of the molecular basis underlying FHB resistance, and potentially lead to novel strategies to improve wheat FHB resistance through epigenetic methods.
RNA/DNA 差异(RDD)是一种转录后修饰,在真核生物中调节多种生物学过程中起着关键作用。尽管它在植物叶绿体和线粒体基因组中得到了广泛研究,但目前对植物核基因组中的 RDD 研究还不够充分。在这里,我们通过比较四个小麦基因型的 Fusarium 感染和对照样本的 RNA-seq 数据,用一种新的方法研究了与镰刀菌穗腐病(FHB)相关的 RDD。共鉴定出 36 个基因中的 187 个高可信度的独特 RDD,代表了小麦中第一个与 FHB 反应相关的 RDD 景观。这些 36 个 RDD 基因中的大多数(26 个)与 FHB 水平呈正相关或负相关。已经确定了这些 RDD 对 RNA 和蛋白质序列的影响,提供了它们的编辑频率和相应基因的表达水平,并预测了对 mRNA 最小折叠自由能、miRNA 结合和 RDD 与保守结构域共定位的影响。RDD 被预测会引起相应基因的 mRNA 和蛋白质结构的修饰。在两个基因 TraesCS1B02G294300 和 TraesCS3A02G263900 中,编辑被预测分别增强了它们与 和 的亲和力。据我们所知,这项研究是首次报道小麦中 RDD 与 FHB 之间的关联;这将有助于更好地理解 FHB 抗性的分子基础,并可能通过表观遗传方法为提高小麦 FHB 抗性提供新的策略。