Centro de Ciências Agrárias e Engenharias, Departamento de Agronomia, Universidade Federal Do Espírito Santo, Alto Universitário, s/n, Alegre, ES, 29500-000, Brazil.
Laboratório Nacional de Computação Científica (LNCC). Av. Getulio Vargas, 333, Petrópolis, Rio de Janeiro, Quitandinha, 25651-076, Brazil.
Sci Rep. 2024 Apr 29;14(1):9811. doi: 10.1038/s41598-024-60417-8.
Most research on trinucleotide repeats (TRs) focuses on human diseases, with few on the impact of TR expansions on plant gene expression. This work investigates TRs' effect on global gene expression in Psidium guajava L., a plant species with widespread distribution and significant relevance in the food, pharmacology, and economics sectors. We analyzed TR-containing coding sequences in 1,107 transcripts from 2,256 genes across root, shoot, young leaf, old leaf, and flower bud tissues of the Brazilian guava cultivars Cortibel RM and Paluma. Structural analysis revealed TR sequences with small repeat numbers (5-9) starting with cytosine or guanine or containing these bases. Functional annotation indicated TR-containing genes' involvement in cellular structures and processes (especially cell membranes and signal recognition), stress response, and resistance. Gene expression analysis showed significant variation, with a subset of highly expressed genes in both cultivars. Differential expression highlighted numerous down-regulated genes in Cortibel RM tissues, but not in Paluma, suggesting interplay between tissues and cultivars. Among 72 differentially expressed genes with TRs, 24 form miRNAs, 13 encode transcription factors, and 11 are associated with transposable elements. In addition, a set of 20 SSR-annotated, transcribed, and differentially expressed genes with TRs was selected as phenotypic markers for Psidium guajava and, potentially for closely related species as well.
大多数三核苷酸重复序列 (TRs) 的研究都集中在人类疾病上,很少涉及 TR 扩展对植物基因表达的影响。这项工作研究了 TRs 对番石榴(Psidium guajava L.)中全局基因表达的影响,番石榴是一种分布广泛、在食品、药理学和经济学领域具有重要意义的植物。我们分析了来自巴西番石榴品种 Cortibel RM 和 Paluma 的根、茎、幼叶、老叶和花蕾组织的 2,256 个基因的 1,107 个转录本中的 TR 编码序列。结构分析显示,TR 序列具有起始于胞嘧啶或鸟嘌呤的小重复数(5-9)或包含这些碱基。功能注释表明 TR 包含基因参与细胞结构和过程(特别是细胞膜和信号识别)、应激反应和抗性。基因表达分析显示存在显著差异,两个品种中都有一部分高度表达的基因。差异表达突出了 Cortibel RM 组织中许多下调的基因,但 Paluma 中没有,这表明组织和品种之间存在相互作用。在具有 TR 的 72 个差异表达基因中,有 24 个形成 miRNA,13 个编码转录因子,11 个与转座元件有关。此外,还选择了一组具有 TR 的 20 个 SSR 注释、转录和差异表达基因作为番石榴的表型标记,可能也适用于密切相关的物种。