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首页> 外文期刊>Plant physiology >Genome-wide analysis of hydrogen peroxide-regulated gene expression in Arabidopsis reveals a high light-induced transcriptional cluster involved in anthocyanin biosynthesis
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Genome-wide analysis of hydrogen peroxide-regulated gene expression in Arabidopsis reveals a high light-induced transcriptional cluster involved in anthocyanin biosynthesis

机译:全基因组分析的拟南芥中过氧化氢调节的基因表达揭示了高光诱导的花色苷生物合成中涉及的转录簇。

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In plants, reactive oxygen species and, more particularly, hydrogen peroxide (H2O2) play a dual role as toxic by-products of normal cell metabolism and as regulatory molecules in stress perception and signal transduction. Peroxisomal catalases are an important sink for photorespiratory H2O2. Using ATH1 Affymetrix microarrays, expression profiles were compared between control and catalase-deficient Arabidopsis (Arabidopsis thaliana) plants. Reduced catalase levels already provoked differences in nuclear gene expression under ambient growth conditions, and these effects were amplified by high light exposure in a sun simulator for 3 and 8 h. This genome-wide expression analysis allowed us to reveal the expression characteristics of complete pathways and functional categories during H2O2 stress. In total, 349 transcripts were significantly up- regulated by high light in catalase-deficient plants and 88 were down-regulated. From this data set, H2O2 was inferred to play a key role in the transcriptional up- regulation of small heat shock proteins during high light stress. In addition, several transcription factors and candidate regulatory genes involved in H2O2 transcriptional gene networks were identified. Comparisons with other publicly available transcriptome data sets of abiotically stressed Arabidopsis revealed an important intersection with H2O2-deregulated genes, positioning elevated H2O2 levels as an important signal within abiotic stress-induced gene expression. Finally, analysis of transcriptional changes in a combination of a genetic (catalase deficiency) and an environmental (high light) perturbation identified a transcriptional cluster that was strongly and rapidly induced by high light in control plants, but impaired in catalase-deficient plants. This cluster comprises the complete known anthocyanin regulatory and biosynthetic pathway, together with genes encoding unknown proteins.
机译:在植物中,活性氧,尤其是过氧化氢(H2O2)在正常细胞代谢中作为有毒副产物,在压力感知和信号转导中起调节分子的双重作用。过氧化物酶体过氧化氢酶是光呼吸过氧化氢的重要汇。使用ATH1 Affymetrix微阵列,比较了对照植物和过氧化氢酶缺陷型拟南芥(Arabidopsis thaliana)植物之间的表达谱。过氧化氢酶水平的降低已经引起环境生长条件下核基因表达的差异,并且这些效应通过在阳光模拟器中长时间暴露3小时和8小时而放大。这种全基因组表达分析使我们能够揭示H2O2胁迫期间完整途径和功能类别的表达特征。在过氧化氢酶缺陷型植物中,总共有349个转录物被强光显着上调,而有88个被下调。从该数据集可以推断出,H2O2在高光胁迫下在小的热激蛋白的转录上调中起关键作用。另外,鉴定了涉及H 2 O 2转录基因网络的几种转录因子和候选调控基因。与其他非生物胁迫拟南芥转录组数据集的比较显示,与H2O2衍生的基因有重要的交集,H2O2水平升高是非生物胁迫诱导的基因表达内的重要信号。最后,结合遗传(过氧化氢酶缺乏症)和环境(强光)干扰的转录变化分析确定了转录簇,该簇在对照植物中被强光强烈而迅速地诱导,但在过氧化氢酶缺陷型植物中受损。该簇包含完整的已知花色苷调节和生物合成途径,以及编码未知蛋白质的基因。

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