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首页> 外文期刊>Plant Molecular Biology >Gene expression analysis by cDNA-AFLP highlights a set of new signaling networks and translational control during seed dormancy breaking in Nicotiana plumbaginifolia
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Gene expression analysis by cDNA-AFLP highlights a set of new signaling networks and translational control during seed dormancy breaking in Nicotiana plumbaginifolia

机译:cDNA-AFLP进行的基因表达分析突出了一套在烟草中休眠休眠过程中的新信号网络和翻译控制

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摘要

Seed dormancy in Nicotiana plumbaginifolia is characterized by an abscisic acid accumulation linked to a pronounced germination delay. Dormancy can be released by 1 year after-ripening treatment. Using a cDNA-amplified fragment length polymorphism (cDNA-AFLP) approach we compared the gene expression patterns of dormant and after-ripened seedS., air-dry or during one day imbibition and analyzed 15,000 cDNA fragments. Among theM., 1020 were found to be differentially regulated by dormancy. Of 412 sequenced cDNA fragmentS., 83 were assigned to a known function by search similarities to public databases. The functional categories of the identified dormancy maintenance and breaking responsive geneS., give evidence that after-ripening turns in the air-dry seed to a new developmental program that modulateS., at the RNA level, components of translational control, signaling networkS., transcriptional control and regulated proteolysis.
机译:烟草(Nicotiana plumbaginifolia)的种子休眠特征是脱落酸积累与发芽延迟明显有关。休眠后1年可以解除休眠。我们使用cDNA扩增的片段长度多态性(cDNA-AFLP)方法,比较了休眠和后熟种子,风干或一天吸水期间的基因表达模式,并分析了15,000个cDNA片段。在M.中,发现1020受到休眠的差异调节。通过与公共数据库的搜索相似性,在412个测序的cDNA片段中,有83个被赋予了已知功能。鉴定出的休眠维持和破坏响应基因的功能类别提供了证据,表明成熟后将风干种子转变成新的发育程序,该程序在RNA水平上调节翻译控制,信号网络的组成部分。转录控制和调节蛋白水解。

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