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首页> 外文期刊>Plant Biotechnology Journal >Microarray analysis of Fusarium graminearum ?¢????induced wheat genes: identification of organ?¢????specific and differentially expressed genes
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Microarray analysis of Fusarium graminearum ?¢????induced wheat genes: identification of organ?¢????specific and differentially expressed genes

机译:镰刀镰刀菌诱导小麦基因的微阵列分析:鉴定器官特异性和差异表达基因

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摘要

A wheat cDNA microarray consisting of 5739 expressed sequence tags (ESTs) was used to investigate the transcriptome patterns of the glume, lemma, palea, anther, ovary and rachis dissected from infected wheat spikes after inoculation with the fungus Fusarium graminearum , the causal agent of fusarium head blight (FHB) disease. Stringent conditions were employed to reduce the false discovery rate. The significance analysis of microarrays (SAM) was used to identify transcripts that showed a differential response between fungal?¢????challenged vs. control plants. To verify the microarray data, Northern blot analysis was carried out on randomly selected up?¢????regulated clones. We observed 185 (3.2%) up?¢????regulated and 16 (0.28%) down?¢????regulated ESTs in the six organs constituting the wheat spike. Many up?¢????regulated ESTs (46.67%) showed no homology with sequences of known functions, whereas others showed homology with genes involved in defence and stress responses, the oxidative burst of H 2 O 2 , regulatory functions, protein synthesis and the phenylpropanoid pathway. The monitoring of genes in specific organs avoided the averaging of expression values over multiple organs that occurs when using data from the whole spike. Our data allowed us to uncover new up?¢????regulated genes expressed in specific organs. The study revealed that each organ had a defined and distinctive transcriptome pattern in response to F. graminearum infection.
机译:使用由5739个表达序列标签(ESTs)组成的小麦cDNA微阵列,研究接种了真菌镰刀镰刀菌(Fusarium graminearum)的真菌感染后,从感染的小麦穗上切下的颖片,外,、内圆,花药,子房和卵巢的转录组模式。镰刀菌病。采用严格条件以降低错误发现率。使用微阵列的显着性分析(SAM)来鉴定在真菌攻击植物和对照植物之间显示出不同反应的转录本。为了验证微阵列数据,对随机选择的上调的克隆进行了Northern印迹分析。我们观察到在组成小麦穗的六个器官中,EST的上调幅度为185(3.2%),而EST的下调幅度为16(0.28%)。许多上调的ESTs(46.67%)与已知功能的序列没有同源性,而其他一些与防御和应激反应,H 2 O 2的氧化爆发,调节功能,蛋白质合成相关的基因显示同源性和苯丙烷途径。对特定器官中的基因进行的监测避免了在使用来自整个峰值的数据时发生的多个器官上表达值的平均。我们的数据使我们能够揭示在特定器官中表达的新的调控基因。这项研究表明,每个器官对禾本科镰刀菌感染都有一个明确的和独特的转录组模式。

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