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对同一大豆基因型与线虫相容性和不相容反应的全长转录分析揭示线虫感染激活植物防御反应。

Full-Length Transcriptional Analysis of the Same Soybean Genotype With Compatible and Incompatible Reactions to Reveals Nematode Infection Activating Plant Defense Response.

作者信息

Huang Minghui, Jiang Ye, Qin Ruifeng, Jiang Dan, Chang Doudou, Tian Zhongyan, Li Chunjie, Wang Congli

机构信息

Key Laboratory of Soybean Molecular Design Breeding, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Harbin, China.

Heilongjiang Academy of Agricultural Sciences, Daqing, China.

出版信息

Front Plant Sci. 2022 May 18;13:866322. doi: 10.3389/fpls.2022.866322. eCollection 2022.

Abstract

Full-length transcriptome sequencing with long reads is a powerful tool to analyze transcriptional and post-transcriptional events; however, it has not been applied on soybean (). Here, a comparative full-length transcriptome analysis was performed on soybean genotype 09-138 infected with soybean cyst nematode (SCN, ) race 4 (SCN4, incompatible reaction) and race 5 (SCN5, compatible reaction) using Oxford Nanopore Technology. Each of 9 full-length samples collected 8 days post inoculation with/without nematodes generated an average of 6.1 GB of clean data and a total of 65,038 transcript sequences. After redundant transcripts were removed, 1,117 novel genes and 41,096 novel transcripts were identified. By analyzing the sequence structure of the novel transcripts, a total of 28,759 complete open reading frame (ORF) sequences, 5,337 transcription factors, 288 long non-coding RNAs, and 40,090 novel transcripts with function annotation were predicted. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses of differentially expressed genes (DEGs) revealed that growth hormone, auxin-activated signaling pathway and multidimensional cell growth, and phenylpropanoid biosynthesis pathway were enriched by infection with both nematode races. More DEGs associated with stress response elements, plant-hormone signaling transduction pathway, and plant-pathogen interaction pathway with more upregulation were found in the incompatible reaction with SCN4 infection, and more DEGs with more upregulation involved in cell wall modification and carbohydrate bioprocess were detected in the compatible reaction with SCN5 infection when compared with each other. Among them, overlapping DEGs with a quantitative difference was triggered. The combination of protein-protein interaction with DEGs for the first time indicated that nematode infection activated the interactions between transcription factor WRKY and VQ (valine-glutamine motif) to contribute to soybean defense. The knowledge of the SCN-soybean interaction mechanism as a model will present more understanding of other plant-nematode interactions.

摘要

长读长的全长转录组测序是分析转录和转录后事件的强大工具;然而,它尚未应用于大豆(此处原文括号内内容缺失)。在此,利用牛津纳米孔技术对感染大豆胞囊线虫(SCN,此处原文括号内内容缺失)4号生理小种(SCN4,不相容反应)和5号生理小种(SCN5,相容反应)的大豆基因型09 - 138进行了比较全长转录组分析。接种线虫与否8天后收集的9个全长样本,每个样本平均产生6.1 GB的 clean数据,共获得65,038个转录本序列。去除冗余转录本后,鉴定出1117个新基因和41,096个新转录本。通过分析新转录本的序列结构,预测出28,759个完整开放阅读框(ORF)序列、5337个转录因子、288个长链非编码RNA以及40,090个具有功能注释的新转录本。对差异表达基因(DEG)的基因本体(GO)和京都基因与基因组百科全书(KEGG)富集分析表明,两种线虫生理小种感染均使生长激素、生长素激活信号通路和多维度细胞生长以及苯丙烷生物合成途径富集。与SCN4感染的不相容反应相比,发现更多与应激反应元件、植物激素信号转导途径和植物 - 病原体相互作用途径相关且上调更多的DEG;与SCN5感染的相容反应相比,在彼此比较时,检测到更多上调更多且参与细胞壁修饰和碳水化合物生物过程的DEG。其中,触发了具有定量差异的重叠DEG。蛋白质 - 蛋白质相互作用与DEG的组合首次表明,线虫感染激活了转录因子WRKY和VQ(缬氨酸 - 谷氨酰胺基序)之间的相互作用,以促进大豆防御。作为模型的SCN - 大豆相互作用机制的知识将有助于更深入理解其他植物 - 线虫相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d85b/9158574/a2991adb6e47/fpls-13-866322-g001.jpg

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