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首页> 外文期刊>Plant Molecular Biology >cDNA sequence, genomic organization and differential expression of three Arabidopsis genes for germin/oxalate oxidase-like proteins.
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cDNA sequence, genomic organization and differential expression of three Arabidopsis genes for germin/oxalate oxidase-like proteins.

机译:胚芽/草酸氧化酶样蛋白的三个拟南芥基因的cDNA序列,基因组组织和差异表达。

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Wheat germin is a protein expressed during germination which possesses an oxalate oxidase activity. Germin-type oxalate oxidases have been extensively studied in monocotyledons (wheat and barley) where they are thought to have important functions for development, stress response and defence against pathogens. In contrast, almost nothing is known about the germin-like proteins found in dicotyledons, gymnosperms and myxomycetes. In this work, cDNA clones for three genes (ATGER1, ATGER2 and ATGER3) encoding germin-like proteins, initially characterized as expressed sequence tags (ESTs), from Arabidopsis thaliana cDNA libraries were further characterized. In addition, a Brassica napus cDNA which was strongly homologous to the cDNA for ATGER1 was isolated and sequenced. Sequence analysis and secondary structure predictions of the proteins encoded by these cDNAs showed that they possess all the characteristic features of members of the germin family and of the germin/seed globulins/sucrose binding protein superfamily. Sequence comparisons and mapping demonstrated the existence of at least two different gene families in the A. thaliana genome encoding a minimum of three genes for germins. These three genes have been mapped in three different location on the Arabidopsis genome. By northern blot hybridizations it was revealed that these genes are differentially regulated. ATGER1 was expressed during germination, like wheat germin, but also in leaves whereas ATGER2 transcripts were exclusively found in developing embryos, like wheat pseudo-germin. ATGER3 mRNAs were found in leaves and flowers and their abundance was shown to vary during the circadian cycle.
机译:小麦胚芽是发芽过程中表达的一种蛋白质,具有草酸氧化酶活性。已在单子叶植物(小麦和大麦)中广泛研究了发芽型草酸氧化酶,认为它们对发育,应激反应和病原体防御具有重要作用。相反,对于双子叶植物,裸子植物和粘菌类中发现的类似胚芽蛋白的蛋白质几乎一无所知。在这项工作中,进一步表征了来自拟南芥cDNA库的三个编码胚芽样蛋白的基因(ATGER1,ATGER2和ATGER3)的cDNA克隆,这些蛋白最初被表征为表达的序列标签(EST)。另外,分离和测序与ATGER1的cDNA高度同源的甘蓝型油菜cDNA。这些cDNA编码的蛋白质的序列分析和二级结构预测表明,它们具有胚芽蛋白家族成员以及胚芽/种子球蛋白/蔗糖结合蛋白超家族成员的所有特征。序列比较和作图证明了拟南芥基因组中至少存在两个不同的基因家族,这些家族至少编码了三个用于发芽的基因。这三个基因已被定位在拟南芥基因组的三个不同位置。通过RNA印迹杂交,揭示了这些基因被差异调节。 ATGER1在发芽期间表达,像小麦胚芽一样,但也在叶子中表达,而ATGER2转录本仅在发育中的胚中表达,例如小麦假发芽蛋白。在叶和花中发现了ATGER3 mRNA,并且它们的丰度在昼夜节律周期中有所变化。

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