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Estimation of D-amino acid oxidase gene expression in different organs of drought-challenged maize

机译:干旱胁迫玉米不同器官中D-氨基酸氧化酶基因表达的估算

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To enhance our exploitations in plant system of D-amino acids oxidizing enzymes (D-amino acid oxidases; DAAO), our efforts were made to unravel the relative expression patterns of maize DAAO transcript using basic and quantitative reverse transcription and polymerase chain reaction (RT-PCR) with template materials collected separately from three different organs of test plants grown under drought stress conditions. Relative expression analysis using 2???Ctvalues indicated that maize DAAO transcript is detectable in all samples, showing about 2.9 to 3.1 folds increase in stress-challenged leaf and root tissues. The results also revealed that the expression of maize DAAO in leaf tissues is prior to root tissues, reflecting the quick impression and response of leaf tissues to drought stress in comparison to roots. Our results may provide a basis and a new research gate to study the novel biological roles of DAAO gene product in plant system.
机译:为了增强我们在植物系统中D-氨基酸氧化酶(D-氨基酸氧化酶; DAAO)的开发水平,我们努力利用碱性和定量逆转录以及聚合酶链反应(RT)揭示玉米DAAO转录本的相对表达模式。 -PCR),并分别从在干旱胁迫条件下生长的测试植物的三个不同器官收集的模板材料。使用2 Ct值的相对表达分析表明,在所有样品中都可检测到玉米DAAO转录本,表明在受胁迫的叶片和根组织中增加了约2.9至3.1倍。结果还表明,玉米DAAO在叶组织中的表达先于根组织,这反映了与根相比,叶组织对干旱胁迫的快速印象和响应。我们的结果可能为研究DAAO基因产物在植物系统中的新生物学作用提供基础和新的研究大门。

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