首页> 外文期刊>Frontiers in Genetics >Profiling of MicroRNAs and Their Targets in Roots and Shoots Reveals a Potential MiRNA-Mediated Interaction Network in Response to Phosphate Deficiency in the Forestry Tree Betula luminifera
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Profiling of MicroRNAs and Their Targets in Roots and Shoots Reveals a Potential MiRNA-Mediated Interaction Network in Response to Phosphate Deficiency in the Forestry Tree Betula luminifera

机译:微小RORNA的分析及其在根部和芽中的靶标呈域潜在的miRNA介导的相互作用网络,以应对林业树中的磷酸盐缺乏<斜体> BETULA Luminifera

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Inorganic phosphate (Pi) is often lacking in natural and agro-climatic environments, which impedes the growth of economically important woody species. Plants have developed strategies to cope with low Pi (LP) availability. MicroRNAs (miRNAs) play important roles in responses to abiotic stresses, including nutrition stress, by regulating target gene expression. However, the miRNA-mediated regulation of these adaptive responses and their underlying coordinating signals are still poorly understood in forestry trees such as Betula luminifera . Transcriptomic libraries, small RNA (sRNA) libraries, and a mixed degradome cDNA library of B. luminifera roots and shoots treated under LP and normal conditions (CK) were constructed and sequenced using next-generation deep sequencing. A comprehensive B . luminifera transcriptome derived from its roots and shoots was constructed, and a total of 76,899 unigenes were generated. Analysis of the transcriptome identified 8,095 and 5,584 differentially expressed genes in roots and shoots, respectively, under LP conditions. sRNA sequencing analyses indicated that 66 and 60 miRNAs were differentially expressed in roots and shoots, respectively, under LP conditions. A total of 109 and 112 miRNA–target pairs were further validated in the roots and shoots, respectively, using degradome sequencing. Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis of differential miRNA targets indicated that the “ascorbate and aldarate metabolism” pathway responded to LP, suggesting miRNA-target pairs might participating in the removing of reactive oxidative species under LP stress. Moreover, a putative network of miRNA–target interactions involved in responses to LP stress in B. luminifera is proposed. Taken together, these findings provide useful information to decipher miRNA functions and establish a framework for exploring P signaling networks regulated by miRNAs in B. luminifera and other woody plants. It may provide new insights into the genetic engineering of high use efficiency of Pi in forestry trees.
机译:无机磷酸盐(Pi)与常缺乏天然和农业气候环境,这阻碍了经济上重要的木本物种的生长。植物有发达的策略来应对低PI(LP)的可用性。微RNA(miRNA)在非生物胁迫,包括营养应激反应中发挥重要作用,通过调节靶基因的表达。然而,这些适应性反应及其基础协调信号的miRNA介导的调控在林业树木如光皮桦仍然知之甚少。转录库,小RNA(的sRNA)库,和LP和正常条件下(CK)下处理光皮桦根和芽的混合降解组cDNA文库构建和使用下一代深度测序测序。综合B中。从它的根和枝条衍生的皮桦转录构建,和总发电量的76899个Unigenes。转录组分析可以确定分别为根与芽,8095和5,584个差异表达基因,LP条件下。的sRNA测序分析表明,66个60种miRNA在分别根和枝条,差异表达,LP的条件下。总共109和112的miRNA靶对在根和枝条中进一步验证,分别使用降解组测序。京都基因与基因组百科途径富集的差异miRNA靶标分析表明,“抗坏血酸和aldarate新陈代谢”途径回应LP,表明miRNA的靶标对可能参与LP胁迫下活性氧物种的去除。此外,涉及到在光皮桦LP应激反应的miRNA靶相互作用的假定网络提出。两者合计,这些结果提供到解密的miRNA功能的有用信息,并建立了一个框架,通过探索在光皮桦和其它木本植物的miRNA调节β信号的网络。它可能提供新的见解在林业树木Pi的利用效率高的基因工程。

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