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首页> 外文期刊>Frontiers in Plant Science >Identification of microRNAs Involved in Regeneration of the Secondary Vascular System in Populus tomentosa Carr
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Identification of microRNAs Involved in Regeneration of the Secondary Vascular System in Populus tomentosa Carr

机译:在<斜体> Populus tomentosa carr中涉及次血管系统再生的微小瘤

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摘要

Wood formation is a complex developmental process primarily controlled by a regulatory transcription network. MicroRNAs (miRNAs) can modulate the expression of target genes involved in plant growth and development by inducing mRNA degradation and translational repression. In this study, we used a model of secondary vascular system regeneration established in Populus tomentosa to harvest differentiating xylem tissues over time for high-throughput sequencing of small RNAs. Analysis of the sequencing data identified 209 known and 187 novel miRNAs during this regeneration process. Degradome sequencing analysis was then performed, revealing 157 and 75 genes targeted by 21 known and 30 novel miRNA families, respectively. Gene ontology enrichment of these target genes revealed that the targets of 15 miRNAs were enriched in the auxin signaling pathway, cell differentiation, meristem development, and pattern specification process. The major biological events during regeneration of the secondary vascular system included the sequential stages of vascular cambium initiation, formation, and differentiation stages in sequence. This study provides the basis for further analysis of these miRNAs to gain greater insight into their regulatory roles in wood development in trees.
机译:木材形成是一种复杂的发育过程,主要由监管转录网络控制。 MicroRNAs(miRNA)可以通过诱导mRNA降解和平移抑制来调节植物生长和发育中涉及的靶基因的表达。在这项研究中,我们使用了在杨树特森萨建立的二次血管系统再生模型,以随着小rNA的高通量测序来收获区分木形组织。在该再生过程中鉴定了209个已知和187个新的miRNA的测序数据的分析。然后进行降低组测序分析,揭示由21个已知和30个新的miRNA家族靶向的157和75个基因。这些靶基因的基因本体学富集显示,15 miRNA的靶向富含毒素信号通路,细胞分化,分析开发和图案规范过程。次级血管系统再生过程中的主要生物事件包括血管结合,形成和分化阶段的顺序阶段。本研究为进一步分析了这些miRNA的进一步分析,以获得更大的洞察树木在树木开发中的监管作用。

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