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Comparative Transcriptome Analyses of Gene Expression Changes Triggered by Rhizoctonia solani AG1 IA Infection in Resistant and Susceptible Rice Varieties

机译:水稻和水稻易感品种由茄状枯萎病菌AG1 IA感染引发的基因表达变化的比较转录组分析。

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摘要

Rice sheath blight, caused by Rhizoctonia solani, is one of the most devastating diseases for stable rice production in most rice-growing regions of the world. Currently, studies of the molecular mechanism of rice sheath blight resistance are scarce. Here, we used an RNA-seq approach to analyze the gene expression changes induced by the AG1 IA strain of R. solani in rice at 12, 24, 36, 48, and 72 h. By comparing the transcriptomes of TeQing (a moderately resistant cultivar) and Lemont (a susceptible cultivar) leaves, variable transcriptional responses under control and infection conditions were revealed. From these data, 4,802 differentially expressed genes (DEGs) were identified. Gene ontology and pathway enrichment analyses suggested that most DEGs and related metabolic pathways in both rice genotypes were common and spanned most biological activities after AG1 IA inoculation. The main difference between the resistant and susceptible plants was a difference in the timing of the response to AG1 IA infection. Photosynthesis, photorespiration, and jasmonic acid and phenylpropanoid metabolism play important roles in disease resistance, and the relative response of disease resistance-related pathways in TeQing leaves was more rapid than that of Lemont leaves at 12 h. Here, the transcription data include the most comprehensive list of genes and pathway candidates induced by AG1 IA that is available for rice and will serve as a resource for future studies into the molecular mechanisms of the responses of rice to AG1 IA.
机译:由茄状枯萎病引起的稻鞘枯萎病是世界上大多数稻米种植地区稳定稻米生产的最具有破坏力的疾病之一。目前,关于水稻鞘枯病抗性的分子机理的研究很少。在这里,我们使用一种RNA-seq方法来分析水稻中在12、24、36、48和72 h茄根线虫的AG1 IA菌株诱导的基因表达变化。通过比较特勤(一种中等抗性品种)和柠檬味(一种易感品种)叶片的转录组,揭示了在对照和感染条件下可变的转录反应。从这些数据中,鉴定了4,802个差异表达基因(DEG)。基因本体论和途径富集分析表明,两种基因型的大多数DEG和相关的代谢途径是共同的,并且跨越了AG1 IA接种后的大部分生物活性。抗性植物和易感植物之间的主要区别是对AG1 IA感染的反应时间有所不同。光合,光呼吸,茉莉酸和苯丙氨酸代谢在抗病性中起重要作用,特清叶片中抗病相关途径的相对响应在12 h处比柠檬叶更快。在这里,转录数据包括可用于水稻的,由AG1 IA诱导的基因和途径候选物的最全面列表,并将用作将来研究水稻对AG1 IA响应的分子机制的资源。

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