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首页> 外文期刊>The Plant Cell >Reprogramming of Root Cells during Nitrogen-Fixing Symbiosis Involves Dynamic Polysome Association of Coding and Noncoding RNAs
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Reprogramming of Root Cells during Nitrogen-Fixing Symbiosis Involves Dynamic Polysome Association of Coding and Noncoding RNAs

机译:在氮素固定共生期间的根细胞重新编程涉及编码和非编码RNA的动态聚集组结合

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摘要

TRAP-seq analysis highlights the importance of translational control and mRNA decay for the successful establishment of the nitrogen-fixing symbiosis in the model legume Medicago truncatula.Translational control is a widespread mechanism that allows the cell to rapidly modulate gene expression in order to provide flexibility and adaptability to eukaryotic organisms. We applied translating ribosome affinity purification combined with RNA sequencing to characterize translational regulation of mRNAs at early stages of the nitrogen-fixing symbiosis established between Medicago truncatula and Sinorhizobium meliloti. Our analysis revealed a poor correlation between transcriptional and translational changes and identified hundreds of regulated protein-coding and long noncoding RNAs (lncRNAs), some of which are regulated in specific cell types. We demonstrated that a short variant of the lncRNA Trans-acting small interference RNA3 (TAS3) increased its association to the translational machinery in response to rhizobia. Functional analysis revealed that this short variant of TAS3 might act as a target mimic that captures microRNA390, contributing to reduce trans acting small interference Auxin Response Factor production and modulating nodule formation and rhizobial infection. The analysis of alternative transcript variants identified a translationally upregulated mRNA encoding subunit 3 of the SUPERKILLER complex (SKI3), which participates in mRNA decay. Knockdown of SKI3 decreased nodule initiation and development, as well as the survival of bacteria within nodules. Our results highlight the importance of translational control and mRNA decay pathways for the successful establishment of the nitrogen-fixing symbiosis.
机译:陷阱-SEQ分析突出了转化控制和mRNA衰减的重要性,以成功建立模型Medicago Truncatula中的氮素固定共生体系。制态控制是一种广泛的机制,允许细胞快速调节基因表达,以便提供灵活性对真核生物的适应性。我们施加了平移核糖体亲和力纯化结合RNA测序,以Medicago Truncatula和Sinorhizobium Meliloti之间建立的氮固定共生早期MRNA的平移调节。我们的分析显示转录和翻译变化之间的相关性差,并确定了数百个受调节的蛋白质编码和长的非编码RNA(LNCRNA),其中一些在特定细胞类型中受到调节。我们证明了LNCRNA转作小干扰RNA3(TAS3)的短变体增加了其与转化机械的结合响应于根唑。功能分析显示,TAS3的这种短变体可能用作捕获MicroRNA390的靶模模拟,有助于减少反式作用小干扰毒素响应因子产生和调节结节形成和根瘤菌感染。替代转录变体的分析鉴定了编码超核仁复合物(SKI3)的平移式上调的mRNA,其参与mRNA腐烂。 SKI3的敲低下降结节引发和开发,以及结节内细菌的存活率。我们的结果突出了转化控制和MRNA衰变途径成功建立氮素固定共生的重要性。

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  • 来源
    《The Plant Cell》 |2020年第2期|共22页
  • 作者单位

    Univ Nacl La Plata Ctr Cient &

    Tecnol La Plata Consejo Nacl Invest Cient &

    Tecn Fac Ciencias Exactas Inst Biotecnol &

    Biol Mol RA-1900 La Plata Argentina;

    Univ Nacl La Plata Ctr Cient &

    Tecnol La Plata Consejo Nacl Invest Cient &

    Tecn Fac Ciencias Exactas Inst Biotecnol &

    Biol Mol RA-1900 La Plata Argentina;

    Univ Nacl La Plata Ctr Cient &

    Tecnol La Plata Consejo Nacl Invest Cient &

    Tecn Fac Ciencias Exactas Inst Biotecnol &

    Biol Mol RA-1900 La Plata Argentina;

    Univ Nacl La Plata Ctr Cient &

    Tecnol La Plata Consejo Nacl Invest Cient &

    Tecn Fac Ciencias Exactas Inst Biotecnol &

    Biol Mol RA-1900 La Plata Argentina;

    Univ Calif Riverside Ctr Plant Cell Biol Dept Bot &

    Plant Sci Riverside CA 92521 USA;

    J Craig Venter Inst Rockville MD 20850 USA;

    J Craig Venter Inst Rockville MD 20850 USA;

    Univ Calif Riverside Ctr Plant Cell Biol Dept Bot &

    Plant Sci Riverside CA 92521 USA;

    Univ Nacl La Plata Ctr Cient &

    Tecnol La Plata Consejo Nacl Invest Cient &

    Tecn Fac Ciencias Exactas Inst Biotecnol &

    Biol Mol RA-1900 La Plata Argentina;

    Univ Nacl La Plata Ctr Cient &

    Tecnol La Plata Consejo Nacl Invest Cient &

    Tecn Fac Ciencias Exactas Inst Biotecnol &

    Biol Mol RA-1900 La Plata Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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