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使用高压喷雾技术对野生型和16C叶片喷洒裸露双链RNA后的小RNA测序数据集。

Small RNA-seq dataset of wild type and 16C leaves sprayed with naked dsRNA using the high-pressure spraying technique.

作者信息

Çalışır Kübra, Krczal Gabi, Uslu Veli Vural

机构信息

Molecular Biology and Genetics Department, Bilkent University, Ankara, Turkey.

Bioeconomy Department, RLP AgroScience GmbH, Neustadt an der Weinstraße, Germany.

出版信息

Data Brief. 2022 Oct 27;45:108706. doi: 10.1016/j.dib.2022.108706. eCollection 2022 Dec.

Abstract

Double-stranded RNA (dsRNA) applications have emerged as promising alternatives to chemical plant pesticides. It has been proposed that the protective effect of dsRNA is mediated by the RNA interference (RNAi) mechanism. Small RNAs (sRNAs) are one of the landmarks of RNAi mechanisms. Two classes of sRNAs appear upon RNAi, triggered by dsRNA: The cleavage products of the dsRNA mapping directly to the dsRNA sequence and the transitive sRNAs mapping to the target transcript outside of the dsRNA sequence. Therefore, the sRNA-seq data obtained from dsRNA-treated plants have been exclusively analysed in the context of the target genes and the outcome has been considered essential to evaluate the underlying mechanism of dsRNA mediated plant protection. Using high-pressure spraying technology (HPST), we have applied a GFP targeting 139bp-long dsRNA on wild type (WT) and GFP expressing (16C) plants in biological triplicates. As a control, we applied water with HPST on 16C . We have acquired sRNA-seq data on the treated and control leaves 5 days post spraying. In this dataset, we have expanded our sRNA-seq analysis from the target GFP transgene sequence to the whole transcriptome of to provide the community with a resource for the small RNA landscape after high-pressure spraying in 16C and WT samples. Furthermore, we have provided a comparison of sRNA landscape between WT and 16C lines.

摘要

双链RNA(dsRNA)的应用已成为化学植物农药的有前景的替代品。有人提出,dsRNA的保护作用是由RNA干扰(RNAi)机制介导的。小RNA(sRNA)是RNAi机制的标志之一。在由dsRNA触发的RNAi过程中会出现两类sRNA:直接映射到dsRNA序列的dsRNA切割产物和映射到dsRNA序列之外的靶转录本的传递性sRNA。因此,从dsRNA处理的植物中获得的sRNA-seq数据仅在靶基因的背景下进行分析,其结果被认为对于评估dsRNA介导的植物保护的潜在机制至关重要。使用高压喷雾技术(HPST),我们将靶向GFP的139bp长的dsRNA以生物学重复的方式应用于野生型(WT)和表达GFP的(16C)植物。作为对照,我们用HPST对16C植物喷水。在喷雾后5天,我们获得了处理过的叶片和对照叶片的sRNA-seq数据。在这个数据集中,我们将sRNA-seq分析从靶GFP转基因序列扩展到整个转录组,为科学界提供16C和WT样本高压喷雾后小RNA景观的资源。此外,我们还比较了WT和16C品系之间的sRNA景观。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5832/9679692/d536a9b366d8/gr1.jpg

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