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通过小RNA和降解组测序鉴定黄瓜中对白粉病感染有响应的微小RNA及其靶标

Identification of MicroRNAs and Their Targets That Respond to Powdery Mildew Infection in Cucumber by Small RNA and Degradome Sequencing.

作者信息

Xu Xuewen, Zhong Cailian, Tan Min, Song Ya, Qi Xiaohua, Xu Qiang, Chen Xuehao

机构信息

School of Horticulture and Plant Protection, Yangzhou University, Yangzhou, China.

Joint International Research Laboratory of Agriculture & Agri-Product Safety, Yangzhou University, Yangzhou, China.

出版信息

Front Genet. 2020 Mar 26;11:246. doi: 10.3389/fgene.2020.00246. eCollection 2020.

Abstract

Powdery mildew (PM) is a prevalent disease known to limit cucumber production worldwide. MicroRNAs (miRNAs) are single-stranded molecules that regulate host defense responses through posttranscriptional gene regulation. However, which specific miRNAs are involved and how they regulate cucumber PM resistance remain elusive. A PM-resistant single-segment substitution line, SSSL508-28, was developed previously using marker-assisted backcrossing of the PM-susceptible cucumber inbred D8 line. In this study, we applied small RNA and degradome sequencing to identify PM-responsive miRNAs and their target genes in the D8 and SSSL508-28 lines. The deep sequencing resulted in the identification of 156 known and 147 novel miRNAs. Among them, 32 and six differentially expressed miRNAs (DEMs) were detected in D8 and SSSL508-28, respectively. The positive correlation between DEMs measured by small RNA sequencing and stem-loop quantitative real-time reverse transcription-polymerase chain reaction confirmed the accuracy of the observed miRNA abundances. The 32 DEMs identified in the PM-susceptible D8 were all upregulated, whereas four of the six DEMs identified in the PM-resistant SSSL508-28 were downregulated. Using and degradome sequencing approaches, 517 and 20 target genes were predicted for the D8 and SSSL508-28 DEMs, respectively. Comparison of the DEM expression profiles with the corresponding mRNA expression profiles obtained in a previous study with the same experimental design identified 60 and three target genes in D8 and SSSL508-28, respectively, which exhibited inverse expression patterns with their respective miRNAs. In particular, five DEMs were located in the substituted segment that contained two upregulated DEMs, Csa-miR172c-3p and Csa-miR395a-3p, in D8 and two downregulated DEMs, Csa-miR395d-3p and Csa-miR398b-3p, in SSSL508-28. One gene encoding L-aspartate oxidase, which was targeted by Csa-miR162a, was also located on the same segment and was specifically downregulated in PM-inoculated D8 leaves. Our results will facilitate the future use of miRNAs in breeding cucumber varieties with enhanced resistance to PM.

摘要

白粉病(PM)是一种普遍存在的病害,已知会限制全球黄瓜产量。微小RNA(miRNA)是通过转录后基因调控来调节宿主防御反应的单链分子。然而,具体涉及哪些miRNA以及它们如何调节黄瓜对白粉病的抗性仍不清楚。先前利用感白粉病黄瓜自交系D8进行标记辅助回交,培育出了一个抗白粉病单片段代换系SSSL508-28。在本研究中,我们应用小RNA和降解组测序来鉴定D8和SSSL508-28品系中对白粉病有响应的miRNA及其靶基因。深度测序鉴定出156个已知miRNA和147个新miRNA。其中,在D8和SSSL508-28中分别检测到32个和6个差异表达miRNA(DEM)。通过小RNA测序测定的DEM与茎环定量实时逆转录-聚合酶链反应之间的正相关证实了所观察到的miRNA丰度的准确性。在感白粉病的D8中鉴定出 的32个DEM均上调,而在抗白粉病的SSSL508-28中鉴定出的6个DEM中有4个下调。利用降解组测序方法,分别为D8和SSSL508-28的DEM预测了517个和20个靶基因。将DEM表达谱与先前采用相同实验设计的研究中获得的相应mRNA表达谱进行比较,在D8和SSSL508-28中分别鉴定出60个和3个靶基因,它们与其各自的miRNA呈现相反的表达模式。特别地,5个DEM位于代换片段中,该片段在D8中包含两个上调的DEM,即Csa-miR172c-3p和Csa-miR395a-3p,在SSSL508-28中包含两个下调的DEM,即Csa-miR395d-3p和Csa-miR398b-3p。一个编码L-天冬氨酸氧化酶的基因,被Csa-miR162a靶向,也位于同一片段上,并且在接种白粉病的D8叶片中特异性下调。我们的结果将有助于未来利用miRNA培育对白粉病抗性增强的黄瓜品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/959b/7113371/6d1a426cecd5/fgene-11-00246-g001.jpg

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