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干旱诱导的玉米根系环状 RNA:从噪声中分离信号。

Drought-induced circular RNAs in maize roots: Separating signal from noise.

机构信息

State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University, Sichuan 611130, China.

Maize Research Institute, Sichuan Agricultural University, Sichuan 611130, China.

出版信息

Plant Physiol. 2024 Sep 2;196(1):352-367. doi: 10.1093/plphys/kiae229.

DOI:10.1093/plphys/kiae229
PMID:38669308
Abstract

Circular RNAs (circRNAs) play an important role in diverse biological processes; however, their origin and functions, especially in plants, remain largely unclear. Here, we used 2 maize (Zea mays) inbred lines, as well as 14 of their derivative recombination inbred lines with different drought sensitivity, to systematically characterize 8,790 circRNAs in maize roots under well-watered (WW) and water-stress (WS) conditions. We found that a diverse set of circRNAs expressed at significantly higher levels under WS. Enhanced expression of circRNAs was associated with longer flanking introns and an enrichment of long interspersed nuclear element retrotransposable elements. The epigenetic marks found at the back-splicing junctions of circRNA-producing genes were markedly different from canonical splicing, characterized by increased levels of H3K36me3/H3K4me1, as well as decreased levels of H3K9Ac/H3K27Ac. We found that genes expressing circRNAs are subject to relaxed selection. The significant enrichment of trait-associated sites along their genic regions suggested that genes giving rise to circRNAs were associated with plant survival rate under drought stress, implying that circRNAs play roles in plant drought responses. Furthermore, we found that overexpression of circMED16, one of the drought-responsive circRNAs, enhances drought tolerance in Arabidopsis (Arabidopsis thaliana). Our results provide a framework for understanding the intricate interplay of epigenetic modifications and how they contribute to the fine-tuning of circRNA expression under drought stress.

摘要

环状 RNA(circRNAs)在多种生物过程中发挥着重要作用;然而,它们的起源和功能,尤其是在植物中,仍然很大程度上不清楚。在这里,我们使用了 2 个玉米(Zea mays)自交系,以及它们的 14 个衍生重组自交系,这些重组自交系在水分胁迫条件下具有不同的抗旱性,系统地分析了玉米根在充分供水(WW)和水分胁迫(WS)条件下的 8790 个 circRNAs。我们发现,一组不同的 circRNAs 在 WS 条件下表达水平显著升高。circRNAs 的增强表达与侧翼内含子更长和长散布核元件逆转座元件富集有关。circRNA 产生基因的回溯剪接连接处的表观遗传标记明显不同于经典剪接,其特征是 H3K36me3/H3K4me1 水平增加,以及 H3K9Ac/H3K27Ac 水平降低。我们发现表达 circRNAs 的基因受到放松的选择。在它们的基因区域沿特定位点的显著富集表明,产生 circRNAs 的基因与植物在干旱胁迫下的存活率有关,这意味着 circRNAs 在植物的抗旱反应中发挥作用。此外,我们发现干旱响应 circRNA 之一 circMED16 的过表达可增强拟南芥(Arabidopsis thaliana)的耐旱性。我们的研究结果为理解表观遗传修饰的复杂相互作用以及它们如何有助于在干旱胁迫下精细调节 circRNA 的表达提供了一个框架。

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