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Gene dosage compensation of rRNA transcript levels in Arabidopsis thaliana lines with reduced ribosomal gene copy number

机译:拟南芥拟南芥系列中RRNA转录物水平的基因剂量补偿具有减少的核糖体基因拷贝数

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摘要

The 45S rRNA genes (rDNA) are among the largest repetitive elements in eukaryotic genomes. rDNA consists of tandem arrays of rRNA genes, many of which are transcriptionally silenced. Silent rDNA repeats may act as 'back-up' copies for ribosome biogenesis and have nuclear organization roles. Through Cas9-mediated genome editing in the Arabidopsis thaliana female gametophyte, we reduced 45S rDNA copy number (CN) to a plateau of similar to 10%. Two independent lines had rDNA CNs reduced by up to 90% at the T7 generation, named low copy number (LCN) lines. Despite drastic reduction of rDNA copies, rRNA transcriptional rates, and steady-state levels remained the same as wild-type plants. Gene dosage compensation of rRNA transcript levels was associated with reduction of silencing histone marks at rDNA loci and altered Nucleolar Organiser Region 2 organization. Although overall genome integrity of LCN lines appears unaffected, a chromosome segmental duplication occurred in one of the lines. Transcriptome analysis of LCN seedlings identified several shared dysregulated genes and pathways in both independent lines. Cas9 genome editing of rRNA repeats to generate LCN lines provides a powerful technique to elucidate rDNA dosage compensation mechanisms and impacts of low rDNA CN on genome stability, development, and cellular processes.
机译:45srrna基因(rDNA)是真核生物基因组中最大的重复序列之一。rDNA由rRNA基因串联阵列组成,其中许多基因转录沉默。沉默的rDNA重复序列可能作为核糖体生物发生的“备份”拷贝,并具有核组织作用。通过对拟南芥雌配子体进行Cas9介导的基因组编辑,我们将45S rDNA拷贝数(CN)降低到10%左右的平台。在T7代,两个独立的品系的rDNA CNs减少了高达90%,称为低拷贝数(LCN)品系。尽管rDNA拷贝数大幅减少,但rRNA转录率和稳态水平与野生型植物保持一致。rRNA转录水平的基因剂量补偿与rDNA位点沉默组蛋白标记的减少和核仁形成区2结构的改变有关。尽管LCN系的整体基因组完整性似乎未受影响,但其中一个系中发生了染色体片段复制。LCN幼苗的转录组分析在两个独立系中发现了几个共同的失调基因和途径。Cas9基因组编辑rRNA重复序列以产生LCN株系为阐明rDNA剂量补偿机制以及低rDNA CN对基因组稳定性、发育和细胞过程的影响提供了强有力的技术。

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  • 来源
    《The Plant Cell》 |2021年第4期|共16页
  • 作者单位

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Univ Milan Dipartimento Biosci I-20133 Milan Italy;

    Univ Clermont Auvergne INSERM GReD CNRS F-63001 Clermont Ferrand France;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Univ Perpignan CNRS Lab Genome &

    Dev Plantes LGDP Via Domitia Perpignan France;

    Univ Milan Dipartimento Biosci I-20133 Milan Italy;

    Natl Univ Ireland Galway Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Syst Biol Lab Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Genet &

    Biotechnol Lab Plant Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Galway H91 REW4 Ireland;

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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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