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Gene ontology analysis of the differentially expressed genes in Oryza sativa implanted by the low-energy nitrogen ion

机译:低能氮离子注入水稻中差异表达基因的基因本体分析

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In order to investigate the overall characteristics of the transcript profiles associated with these puzzling biological effects. We used the Agilent Rice Oligo Microarray to learn the molecular mechanism in rice responding to ion-implantation. The analysis of the genechip array shows that there were 982 transcripts expressed differentially (fold change > 2 and P value < 0.05) including 429 up-regulated transcripts and 553 down-regulated transcripts under the dose3 6×1017 N+/cm2. Gene ontology analysis of the microarray data indicates that the up-regulated genes are belonged to five molecular functions, including three cellular component and one metabolic process (oxidation reduction), and the down-regulated genes are belonged to ten molecular functions, nineteen biological process, but no cellular component. Significantly, the gene ontology analysis of the microarray data strongly suggests that the up-regulated retroelements transcripts and oxidoreductase activity genes, down-regulated recombinases, many down-regulated transcription factors involve in the response to the ion beam implantation for their expression changes. This gene ontology analysis might help to reveal the low-energy ion implantation regulation on many biological processes and metabolism pathways.
机译:为了研究与这些令人费解的生物学效应有关的转录本概况的总体特征。我们使用安捷伦Rice Oligo微阵列芯片来研究水稻对离子注入的响应的分子机理。基因芯片阵列分析显示,在3×6×10 17 2,P值<0.05),包括429个上调的转录本和553个下调的转录本。 > N + / cm 2 。基因芯片数据的基因本体分析表明,上调的基因属于五个分子功能,包括三个细胞成分和一个代谢过程(氧化还原),下调的基因属于十个分子功能,十九个生物学过程,但没有蜂窝组件。重要的是,对微阵列数据的基因本体分析强烈表明,上调的逆转录产物和氧化还原酶活性基因,下调的重组酶,许多下调的转录因子参与了离子束植入对其表达变化的响应。该基因本体分析可能有助于揭示低能离子注入对许多生物过程和代谢途径的调控。

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