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R 环作为调控开关,调节水稻冷响应基因的转录。

R-loops act as regulatory switches modulating transcription of COLD-responsive genes in rice.

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement and Utilization, Collaborative Innovation Center for Modern Crop Production Co-Sponsored by Province and Ministry (CIC-MCP), Nanjing Agricultural University, No. 1 Weigang, Nanjing, Jiangsu, 210095, China.

Xiangyang Academy of Agricultural Sciences, Xiangyang, Hubei Province, 441057, China.

出版信息

New Phytol. 2024 Jan;241(1):267-282. doi: 10.1111/nph.19315. Epub 2023 Oct 17.

Abstract

COLD is a major naturally occurring stress that usually causes complex symptoms and severe yield loss in crops. R-loops function in various cellular processes, including development and stress responses, in plants. However, how R-loops function in COLD responses is largely unknown in COLD susceptible crops like rice (Oryza sativa L.). We conducted DRIP-Seq along with other omics data (RNA-Seq, DNase-Seq and ChIP-Seq) in rice with or without COLD treatment. COLD treatment caused R-loop reprogramming across the genome. COLD-biased R-loops had higher GC content and novel motifs for the binding of distinct transcription factors (TFs). Moreover, R-loops can directly/indirectly modulate the transcription of a subset of COLD-responsive genes, which can be mediated by R-loop overlapping TF-centered or cis-regulatory element-related regulatory networks and lncRNAs, accounting for c. 60% of COLD-induced expression of differential genes in rice, which is different from the findings in Arabidopsis. We validated two R-loop loci with contrasting (negative/positive) roles in the regulation of two individual COLD-responsive gene expression, as potential targets for enhanced COLD resistance. Our study provides detailed evidence showing functions of R-loop reprogramming during COLD responses and provides some potential R-loop loci for genetic and epigenetic manipulation toward breeding of rice varieties with enhanced COLD tolerance.

摘要

冷胁迫是一种主要的自然发生的胁迫,通常会导致作物出现复杂的症状和严重的产量损失。R 环在植物的各种细胞过程中发挥作用,包括发育和应激反应。然而,在像水稻(Oryza sativa L.)这样对冷敏感的作物中,R 环如何在冷响应中发挥作用在很大程度上是未知的。我们在有或没有冷处理的水稻中进行了 DRIP-Seq 以及其他组学数据(RNA-Seq、DNase-Seq 和 ChIP-Seq)的分析。冷处理导致整个基因组中的 R 环重新编程。冷偏倚的 R 环具有更高的 GC 含量和新型的结合不同转录因子(TFs)的基序。此外,R 环可以直接/间接调节一组冷响应基因的转录,这可以通过 R 环重叠的以 TF 为中心或顺式调控元件相关的调控网络和 lncRNA 介导,占水稻中冷诱导差异基因表达的 c.60%,这与拟南芥的发现不同。我们验证了两个 R 环位点,它们在两个单独的冷响应基因表达的调控中具有相反(负/正)的作用,作为增强冷抗性的潜在靶点。我们的研究提供了详细的证据,表明 R 环在冷响应过程中的重编程功能,并提供了一些潜在的 R 环位点,用于遗传和表观遗传操作,以培育具有增强冷耐受性的水稻品种。

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