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Isonitrosoacetophenone Drives Transcriptional Reprogramming in Nicotiana tabacum Cells in Support of Innate Immunity and Defense

机译:异亚硝基苯乙酮驱动烟草细胞中的转录重编程以支持先天免疫和防御。

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摘要

Plants respond to various stress stimuli by activating broad-spectrum defense responses both locally as well as systemically. As such, identification of expressed genes represents an important step towards understanding inducible defense responses and assists in designing appropriate intervention strategies for disease management. Genes differentially expressed in tobacco cell suspensions following elicitation with isonitrosoacetophenone (INAP) were identified using mRNA differential display and pyro-sequencing. Sequencing data produced 14579 reads, which resulted in 198 contigs and 1758 singletons. Following BLAST analyses, several inducible plant defense genes of interest were identified and classified into functional categories including signal transduction, transcription activation, transcription and protein synthesis, protein degradation and ubiquitination, stress-responsive, defense-related, metabolism and energy, regulation, transportation, cytoskeleton and cell wall-related. Quantitative PCR was used to investigate the expression of 17 selected target genes within these categories. Results indicate that INAP has a sensitising or priming effect through activation of salicylic acid-, jasmonic acid- and ethylene pathways that result in an altered transcriptome, with the expression of genes involved in perception of pathogens and associated cellular re-programming in support of defense. Furthermore, infection assays with the pathogen Pseudomonas syringae pv. tabaci confirmed the establishment of a functional anti-microbial environment in planta.
机译:植物通过激活局部和系统性的广谱防御反应来响应各种胁迫刺激。因此,表达基因的鉴定是理解可诱导的防御反应的重要一步,并有助于设计适当的疾病治疗干预策略。使用mRNA差异展示和焦磷酸测序鉴定了被异亚硝基苯乙酮(INAP)诱导后在烟草细胞悬液中差异表达的基因。测序数据产生14579个读段,导致198个重叠群和1758个单例。在进行BLAST分析后,鉴定了几种可诱导的植物防御基因,并将其分类为功能类别,包括信号转导,转录激活,转录和蛋白质合成,蛋白质降解和泛素化,胁迫响应,防御相关,代谢和能量,调节,运输,细胞骨架与细胞壁有关。定量PCR用于研究这些类别中17个选定靶基因的表达。结果表明,INAP通过激活水杨酸,茉莉酸和乙烯途径,从而导致转录组改变,具有激活病原体和相关细胞重编程以支持防御的基因表达,具有激活或引发水杨酸,茉莉酸和乙烯途径的作用。 。此外,用病原体丁香假单胞菌PV进行感染测定。烟粉虱证实了在植物体内建立了功能性的抗菌环境。

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