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The Hot Pepper (Capsicum annuum) MicroRNA Transcriptome Reveals Novel and Conserved Targets: A Foundation for Understanding MicroRNA Functional Roles in Hot Pepper

机译:辣椒(辣椒)MicroRNA转录组揭示了新颖和保守的目标:了解辣椒中MicroRNA功能作用的基础。

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摘要

MicroRNAs (miRNAs) are a class of non-coding RNAs approximately 21 nt in length which play important roles in regulating gene expression in plants. Although many miRNA studies have focused on a few model plants, miRNAs and their target genes remain largely unknown in hot pepper (Capsicum annuum), one of the most important crops cultivated worldwide. Here, we employed high-throughput sequencing technology to identify miRNAs in pepper extensively from 10 different libraries, including leaf, stem, root, flower, and six developmental stage fruits. Based on a bioinformatics pipeline, we successfully identified 29 and 35 families of conserved and novel miRNAs, respectively. Northern blot analysis was used to validate further the expression of representative miRNAs and to analyze their tissue-specific or developmental stage-specific expression patterns. Moreover, we computationally predicted miRNA targets, many of which were experimentally confirmed using 5′ rapid amplification of cDNA ends analysis. One of the validated novel targets of miR-396 was a domain rearranged methyltransferase, the major de novo methylation enzyme, involved in RNA-directed DNA methylation in plants. This work provides the first reliable draft of the pepper miRNA transcriptome. It offers an expanded picture of pepper miRNAs in relation to other plants, providing a basis for understanding the functional roles of miRNAs in pepper.
机译:微小RNA(miRNA)是一类长度约为21 nt的非编码RNA,在调节植物的基因表达中起重要作用。尽管许多miRNA研究集中在一些模型植物上,但辣椒(辣椒(Capsicum annuum))是世界上种植的最重要的农作物之一,但miRNA及其靶基因在很大程度上仍然未知。在这里,我们采用高通量测序技术从10个不同的文库中广泛鉴定了辣椒中的miRNA,这些文库包括叶,茎,根,花和六个发育阶段的果实。基于生物信息学流程,我们分别成功鉴定了29个和35个保守和新颖miRNA家族。 Northern印迹分析用于进一步验证代表性miRNA的表达并分析其组织特异性或发育阶段特异性表达模式。此外,我们通过计算预测了miRNA靶标,其中许多靶标是使用cDNA末端分析的5'快速扩增实验确定的。 miR-396的一种经过验证的新颖靶标是结构域重排的甲基转移酶(一种主要的从头甲基化酶),参与植物的RNA定向DNA甲基化。这项工作提供了辣椒miRNA转录组的第一个可靠的草案。它提供了与其他植物有关的胡椒miRNA的扩展图片,为了解miRNA在胡椒中的功能作用提供了基础。

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