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[物种名称]的小RNA转录组为深入了解微小RNA在花发育和萜类化合物合成中的潜在影响提供了线索。

Small RNA Transcriptome of Provides Insights into the Potential Influence of microRNAs in Flower Development and Terpene Synthesis.

作者信息

Kim Taewook, Park June Hyun, Lee Sang-Gil, Kim Soyoung, Kim Jihyun, Lee Jungho, Shin Chanseok

机构信息

Department of Agricultural Biotechnology, Seoul National University, Seoul 08826, Korea.

Program in Applied Life Chemistry, Seoul National University, Seoul,08826, Korea.

出版信息

Mol Cells. 2017 Aug;40(8):587-597. doi: 10.14348/molcells.2017.0086. Epub 2017 Aug 10.

Abstract

MicroRNAs (miRNAs) are essential small RNA molecules that regulate the expression of target mRNAs in plants and animals. Here, we aimed to identify miRNAs and their putative targets in , the national flower of South Korea. We employed high-throughput sequencing of small RNAs obtained from four different tissues (, leaf, root, flower, and ovary) and identified 33 conserved and 30 novel miRNA families, many of which showed differential tissue-specific expressions. In addition, we computationally predicted novel targets of miRNAs and validated some of them using 5' rapid amplification of cDNA ends analysis. One of the validated novel targets of miR477 was a terpene synthase, the primary gene involved in the formation of disease-resistant terpene metabolites such as sterols and phytoalexins. In addition, a predicted target of conserved miRNAs, miR396, is , which is involved in flower initiation and is duplicated in . Collectively, this study provides the first reliable draft of the miRNA transcriptome that should constitute a basis for understanding the biological roles of miRNAs in

摘要

微小RNA(miRNA)是在植物和动物中调节靶标mRNA表达的重要小RNA分子。在此,我们旨在鉴定韩国国花——[具体花名缺失]中的miRNA及其推定靶标。我们对从四种不同组织([具体组织名缺失]、叶、根、花和子房)获得的小RNA进行了高通量测序,并鉴定出33个保守和30个新的miRNA家族,其中许多显示出不同的组织特异性表达。此外,我们通过计算预测了miRNA的新靶标,并使用5' cDNA末端快速扩增分析对其中一些进行了验证。miR477的一个经过验证的新靶标是一种萜类合酶,它是参与形成抗病萜类代谢产物(如甾醇和植保素)的主要基因。此外,保守miRNA miR396的一个预测靶标是[具体基因名缺失],它参与花的起始并且在[具体物种名缺失]中发生了复制。总的来说,这项研究提供了第一个可靠的miRNA转录组草图,应为理解miRNA在[具体物种名缺失]中的生物学作用奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba21/5582305/67b347e12381/molce-40-8-587f1.jpg

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