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在应对低温胁迫时,对赤桉进行高通量miRNA测序并鉴定一种新型ICE1靶向miRNA 。

High-throughput miRNA sequencing and identification of a novel ICE1-targeting miRNA in response to low temperature stress in Eucalyptus camaldulensis.

作者信息

Zhang W-H, Zhang Z-Y, Liu Y, Tan Z-Y, Zhou Q, Lin Y-Z

机构信息

College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, China.

Guangdong Academy of Forestry, Guangzhou, China.

出版信息

Plant Biol (Stuttg). 2023 Jun;25(4):541-550. doi: 10.1111/plb.13520. Epub 2023 Apr 4.

DOI:10.1111/plb.13520
PMID:36971569
Abstract

MicroRNAs (miRNAs) play a crucial role in the growth, development, morphogenesis, signal transduction, and stress response in plants. The ICE (Inducer of CBF expression)-CBF (C-repeat binding factor)-COR (Cold-regulated gene) regulatory cascade is an important signalling pathway in plant response to low temperature stress, and it remains unknown whether this pathway is regulated by miRNAs. In this study, high-throughput sequencing was employed for predicting and identifying the miRNAs that were likely to target the ICE-CBF-COR pathway in Eucalyptus camaldulensis. A novel ICE1-targeting miRNA, eca-novel-miR-259-5p (nov-miR259), was further analysed. A total of 392 conserved miRNAs and 97 novel miRNAs were predicted, including 80 differentially expressed miRNAs. Of these, 30 miRNAs were predicted to be associated with the ICE-CBF-COR pathway. The full-length of mature nov-miR259 was 22 bp and its precursor gene was 60 bp in length, with a typical hairpin structure. The RNA ligase-mediated 5' amplification of cDNA ends (5'-RLM-RACE) and Agrobacterium-mediated tobacco transient expression assays demonstrated that nov-miR259 could cleave EcaICE1 in vivo. Moreover, qRT-PCR and Pearson's correlation analysis further revealed that the expression levels of nov-miR259 were almost significantly negatively correlated with those of its target gene, EcaICE1, and the other genes in the ICE-CBF-COR pathway. We first identified the nov-miR259 as a novel ICE1-targeting miRNA, and the nov-miR259-ICE1 module may be involved in regulating the cold stress response in E. camaldulensis.

摘要

微小RNA(miRNA)在植物的生长、发育、形态发生、信号转导和应激反应中发挥着关键作用。ICE(CBF表达诱导因子)-CBF(C-重复结合因子)-COR(冷调节基因)调控级联是植物响应低温胁迫的重要信号通路,而该通路是否受miRNA调控尚不清楚。在本研究中,采用高通量测序来预测和鉴定可能靶向赤桉ICE-CBF-COR通路的miRNA。进一步分析了一种新的靶向ICE1的miRNA,即eca-novel-miR-259-5p(nov-miR259)。共预测到392个保守miRNA和97个新miRNA,其中包括80个差异表达的miRNA。其中,30个miRNA被预测与ICE-CBF-COR通路相关。成熟nov-miR259的全长为22bp,其前体基因长度为60bp,具有典型的发夹结构。RNA连接酶介导的cDNA末端5'扩增(5'-RLM-RACE)和农杆菌介导的烟草瞬时表达分析表明,nov-miR259可在体内切割EcaICE1。此外,qRT-PCR和Pearson相关性分析进一步表明,nov-miR259的表达水平与其靶基因EcaICE1以及ICE-CBF-COR通路中的其他基因的表达水平几乎呈显著负相关。我们首次鉴定出nov-miR259是一种新的靶向ICE1的miRNA,nov-miR259-ICE1模块可能参与调控赤桉的冷应激反应。

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