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New Insights in the Sugarcane Transcriptome Responding to Drought Stress as Revealed by Supersage

机译:甘蔗转录组对干旱胁迫反应的新见解

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摘要

In the scope of the present work, four SuperSAGE libraries have been generated, using bulked root tissues from four drought-tolerant accessions as compared with four bulked sensitive genotypes, aiming to generate a panel of differentially expressed stress-responsive genes. Both groups were submitted to 24 hours of water deficit stress. The SuperSAGE libraries produced 8,787,315 tags (26 bp) that, after exclusion of singlets, allowed the identification of 205,975 unitags. Most relevant BlastN matches comprised 567,420 tags, regarding 75,404 unitags with 164,860 different ESTs. To optimize the annotation efficiency, the Gene Ontology (GO) categorization was carried out for 186,191 ESTs (BlastN against Uniprot-SwissProt), permitting the categorization of 118,208 ESTs (63.5%). In an attempt to elect a group of the best tags to be validated by RTqPCR, the GO categorization of the tag-related ESTs allowed the in silico identification of 213 upregulated unitags responding basically to abiotic stresses, from which 145 presented no hits after BlastN analysis, probably concerning new genes still uncovered in previous studies. The present report analyzes the sugarcane transcriptome under drought stress, using a combination of high-throughput transcriptome profiling by SuperSAGE with the Solexa sequencing technology, allowing the identification of potential target genes during the stress response.
机译:在本工作范围内,已经使用来自四个耐旱种质的膨大根组织与四个膨大的敏感基因型相比,生成了四个SuperSAGE文库,目的是产生一组差异表达的胁迫响应基因。两组均遭受24小时缺水胁迫。 SuperSAGE库产生了8,787,315个标签(26?bp),在排除单线态之后,可以识别205,975个单位。最相关的BlastN匹配包括567,420个标签,涉及75,404个单位和164,860个不同的EST。为了优化注释效率,对186,191个EST(针对Uniprot-SwissProt的BlastN)进行了基因本体(GO)分类,允许对118,208个EST(63.5%)进行分类。为了尝试选择一组最好的通过RTqPCR验证的标签,标签相关EST的GO分类允许对213种上调的单位生物进行计算机鉴定,这些单位基本上对非生物胁迫产生反应,其中145个在BlastN分析后未显示出结果,可能涉及以前研究中尚未发现的新基因。本报告结合SuperSAGE的高通量转录组分析和Solexa测序技术,分析了干旱胁迫下的甘蔗转录组,从而可以在胁迫反应期间鉴定潜在的目标基因。

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