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Identification of differentially expressed genes in cucumber (Cucumis sativus L.) root under waterlogging stress by digital gene expression profile

机译:利用数字基因表达谱鉴定淹水胁迫下黄瓜根系差异表达基因

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High-throughput tag-sequencing (Tag-seq) analysis based on the Solexa Genome Analyzer platform was applied to analyze the gene expression profiling of cucumber plant at 5 time points over a 24?h period of waterlogging treatment. Approximately 5.8?million total clean sequence tags per library were obtained with 143013 distinct clean tag sequences. Approximately 23.69%–29.61% of the distinct clean tags were mapped unambiguously to the unigene database, and 53.78%–60.66% of the distinct clean tags were mapped to the cucumber genome database. Analysis of the differentially expressed genes revealed that most of the genes were down-regulated in the waterlogging stages, and the differentially expressed genes mainly linked to carbon metabolism, photosynthesis, reactive oxygen species generation/scavenging, and hormone synthesis/signaling. Finally, quantitative real-time polymerase chain reaction using nine genes independently verified the tag-mapped results. This present study reveals the comprehensive mechanisms of waterlogging-responsive transcription in cucumber.
机译:基于Solexa Genome Analyzer平台的高通量标签测序(Tag-seq)分析被用于分析涝渍处理24小时内5个时间点的黄瓜植物基因表达谱。每个文库使用143013个不同的干净标签序列获得了约580万个干净序列标签。大约23.69%–29.61%的独特清洁标签已明确映射到unigene数据库,而53.78%–60.66%的独特清洁标签已映射至黄瓜基因组数据库。对差异表达基因的分析表明,大多数基因在涝渍阶段均被下调,差异表达基因主要与碳代谢,光合作用,活性氧的产生/清除以及激素合成/信号传导有关。最后,使用9个基因的定量实时聚合酶链反应独立地验证了标签映射的结果。本研究揭示了黄瓜内涝响应转录的综合机制。

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