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Integration of Transcriptomes, Small RNAs, and Degradome Sequencing to Identify Putative miRNAs and their Targets Related to Eu-Rubber Biosynthesis in Eucommia ulmoides

机译:转录om,小RNA和降低测量测序的整合,以鉴定杜仲难剂的欧洲橡胶生物合成相关的推定miRNA及其靶标

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摘要

Eucommia ulmoides has attracted much attention as a valuable natural rubber (Eu-rubber) production tree. As a strategic material, Eu-rubber plays a vital role in general and defence industries. However, the study of Eu-rubber biosynthesis at a molecular level is scarce, and the regulatory network between microRNAs (miRNAs) and messenger RNAs (mRNAs) in Eu-rubber biosynthesis has not been assessed. In this study, we comprehensively analyzed the transcriptomes, small RNAs (sRNAs) and degradome to reveal the regulatory network of Eu-rubber biosynthesis in E. ulmoides. A total of 82,065 unigenes and 221 miRNAs were identified using high-throughput sequencing; 20,815 targets were predicted using psRNATarget software. Of these targets, 779 miRNA-target pairs were identified via degradome sequencing. Thirty-one miRNAs were differentially expressed; 22 targets of 34 miRNAs were annotated in the terpenoid backbone biosynthesis pathway (ko00900) based on the Kyoto Encyclopedia of Genes and Genomes (KEGG). These miRNAs were putatively related to Eu-rubber biosynthesis. A regulatory network was constructed according to the expression profiles of miRNAs and their targets. These results provide a comprehensive analysis of transcriptomics, sRNAs and degradome to reveal the Eu-rubber accumulation, and provide new insights into genetic engineering techniques which may improve the content of Eu-rubber in E. ulmoides.
机译:杜仲乌罗脂骨作为一个有价值的天然橡胶(Eu-橡胶)生产树引起了许多关注。作为战略材料,欧盟橡胶在一般和国防产业起着至关重要的作用。然而,在分子水平下对Eu-橡胶生物合成的研究是稀缺的,并且尚未评估Eu-橡胶生物合成中的MicroRNA(miRNA)和信使RNA(MRNA)之间的调节网络。在这项研究中,我们综合地分析了转录om,小RNA(SRNA)和降级,以揭示E.umoides中Eu-橡胶生物合成的调节网络。使用高通量测序识别总共82,065个unigenes和221 miRNA;使用PSRNATarget软件预先预测20,815个目标。在这些靶标中,通过降低测量测序鉴定了779个miRNA-靶对。三十一点米兰斯表达了差异化;基于基因和基因组(Kegg)的京都骨科(KOGG),在Terpenoid主链生物合成途径(KO00900)中注释了34项miRNA的靶标。这些miRNA与Eu-橡胶生物合成相关。根据MiRNA及其目标的表达型谱构建了监管网络。这些结果提供了对转录组织,SRNA和降级的综合分析,以揭示欧盟橡胶积累,并为遗传工程技术提供新的见解,这可能改善E.umoides中Eu-橡胶含量。

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