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水稻中铁应答 lncRNA 的转录组特征及其调控机制。

Transcriptomic Profiling of Fe-Responsive lncRNAs and Their Regulatory Mechanism in Rice.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

Key Laboratory of Soybean Molecular Design Breeding, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun 130102, China.

出版信息

Genes (Basel). 2021 Apr 14;12(4):567. doi: 10.3390/genes12040567.

Abstract

Iron (Fe) deficiency directly affects crop growth and development, ultimately resulting in reduced crop yield and quality. Recently, long non-coding RNAs (lncRNAs) have been demonstrated to play critical regulatory roles in a multitude of pathways across numerous species. However, systematic screening of lncRNAs responding to Fe deficiency and their regulatory mechanism in plants has not been reported. In this work, 171 differently expressed lncRNAs (DE-lncRNAs) were identified based on analysis of strand-specific RNA-seq data from rice shoots and roots under Fe-deficient conditions. We also found several lncRNAs, which could generate miRNAs or act as endogenous target mimics to regulate expression of Fe-related genes. Analysis of interaction networks and gene ontology enrichment revealed that a number of DE-lncRNAs were associated with iron transport and photosynthesis, indicating a possible role of lncRNAs in regulation of Fe homeostasis. Moreover, we identified 76 potential lncRNA targets of OsbHLH156, a key regulator for transcriptional response to Fe deficiency. This study provides insight into the potential functions and regulatory mechanism of Fe-responsive lncRNAs and would be an initial and reference for any further studies regarding lncRNAs involved in Fe deficiency in plants.

摘要

铁(Fe)缺乏直接影响作物的生长和发育,最终导致作物产量和质量下降。最近,长链非编码 RNA(lncRNA)已被证明在多种物种的众多途径中发挥关键的调控作用。然而,植物中对 Fe 缺乏反应的 lncRNA 的系统筛选及其调控机制尚未报道。在这项工作中,根据水稻芽和根在 Fe 缺乏条件下的链特异性 RNA-seq 数据分析,鉴定了 171 个差异表达的 lncRNA(DE-lncRNA)。我们还发现了几个 lncRNA,它们可以产生 miRNA 或作为内源性靶标模拟物来调节 Fe 相关基因的表达。互作网络和基因本体富集分析表明,一些 DE-lncRNA 与铁转运和光合作用有关,这表明 lncRNA 在调节 Fe 稳态中可能发挥作用。此外,我们鉴定了 76 个 OsbHLH156 的潜在 lncRNA 靶标,OsbHLH156 是转录对 Fe 缺乏反应的关键调节剂。本研究为 Fe 响应 lncRNA 的潜在功能和调控机制提供了深入了解,为进一步研究植物中参与 Fe 缺乏的 lncRNA 提供了初步参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5491/8070830/44c83b83cf47/genes-12-00567-g001.jpg

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