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首页> 外文期刊>Tree Physiology >Genome-wide investigation of DNA methylation dynamics reveals a critical role of DNA demethylation during the early somatic embryogenesis of Dimocarpus longan Lour
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Genome-wide investigation of DNA methylation dynamics reveals a critical role of DNA demethylation during the early somatic embryogenesis of Dimocarpus longan Lour

机译:对DNA甲基化动力学的基因组调查显示DNA去甲基化在Dimocarpus龙眼柔和嘴的早期体细胞胚胎发生过程中的关键作用

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摘要

DNA methylation plays essential roles in gene regulation, chromatin structure stability, gene imprinting, X chromosome inactivation and embryonic development. However, the dynamics and functions of DNA methylation during the early stage of longan (Dimocarpus longan) somatic embryogenesis (SE) are still unclear. In this study, we carried out whole genome bisulphite sequencing and transcriptome sequencing analyses for embryogenic callus (EC), incomplete compact pro-embryogenic cultures (ICpEC) and globular embryos (GE) in an early SE system. At a global level, the DNA 5-methylcytosine content in EC, ICpEC and GE was 24.59, 19.65 and 19.74%, respectively, suggesting a global decrease in DNA methylation from EC to ICpEC and then a slight increase from ICpEC to GE. Differentially methylated region (DMR) analysis showed that hypomethylation mainly occurred in CHH contexts. Gene ontology and Kyoto encyclopedia of genes and genomes analysis of hypomethylated-CHH-DMR-associated genes revealed that zein biosynthesis, fatty acid biosynthesis, circadian rhythm and mitophagy pathways were involved in longan early SE. Expression patterns of DNA methyltransferase and demethylase genes during longan early SE suggested that the decrease in DNA methylation was probably regulated by DNA methyltransferase genes and the DNA demethylase gene REPRESSOR OF SILENCING 1 (ROS1). The correlation between DNA hypomethylation and gene expression revealed that decreased DNA methylation did not cause extensive changes in gene expression during early longan SE and that gene expression may be affected by methylation changes in gene and downstream regions. Inhibiting DNA methylation with 5-azacytidine treatment in EC promoted the formation of GE and enhanced the capability of longan SE. Our results suggest that DNA demethylation has important roles in longan SE development.
机译:DNA甲基化在基因调控、染色质结构稳定性、基因印迹、X染色体失活和胚胎发育中起着重要作用。然而,龙眼体细胞胚胎发生早期DNA甲基化的动态和功能尚不清楚。在这项研究中,我们对早期SE系统中的胚性愈伤组织(EC)、不完全致密原胚性培养物(ICpEC)和球状胚(GE)进行了全基因组亚硫酸氢盐测序和转录组测序分析。在全球水平上,EC、ICpEC和GE中的DNA 5-甲基胞嘧啶含量分别为24.59%、19.65%和19.74%,表明从EC到ICpEC的DNA甲基化在全球范围内减少,然后从ICpEC到GE的DNA甲基化略有增加。差异甲基化区(DMR)分析表明,低甲基化主要发生在CHH环境中。基因本体和京都基因百科全书对低甲基化CHH-DMR相关基因的基因组分析表明,玉米醇溶蛋白生物合成、脂肪酸生物合成、昼夜节律和有丝分裂途径参与了龙眼早期SE。龙眼早期硒化过程中DNA甲基转移酶和去甲基化酶基因的表达模式表明,DNA甲基化的降低可能受DNA甲基转移酶基因和DNA去甲基化酶基因沉默抑制因子1(ROS1)的调控。DNA低甲基化与基因表达之间的相关性表明,在龙眼SE早期,DNA甲基化降低不会引起基因表达的广泛变化,基因表达可能受到基因和下游区域甲基化变化的影响。用5-氮杂胞苷抑制EC中的DNA甲基化,促进了GE的形成,增强了龙眼SE的能力。我们的结果表明,DNA去甲基化在龙眼硒的发育中具有重要作用。

著录项

  • 来源
    《Tree Physiology》 |2020年第12期|共20页
  • 作者单位

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

    Fujian Agr &

    Forestry Univ Inst Hort Biotechnol Fuzhou 350002 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
  • 关键词

    RdDM; gene expression; CHH hypomethylation; transcriptome;

    机译:RDDM;基因表达;CHH低甲基化;转录组;

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