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In Silico Identification of Putative Regulatory Sequence Elements in the 5′-Untranslated Region of Genes That Are Expressed during Male Gametogenesis

机译:在计算机模拟中鉴定男性配子形成过程中表达的基因的5'-非翻译区域中的假定调控序列元件。

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摘要

During pollen development, transcription of a large number of genes results in the appearance of distinct sets of transcripts. Similar mRNA sets are present in pollen of both mono- and dicotyledonous plant species, which indicates an evolutionary conservation of genetic programs that determine pollen gene expression. In pollen, regulation of gene expression occurs at the transcriptional and posttranscriptional level. The 5′-untranslated region (UTR) of several pollen transcripts has been shown to be important for regulation of pollen gene expression. The important regulatory role of 5′-UTR sequences and the evolutionary conservation of genetic programs in pollen led to the hypothesis that the 5′-UTRs of pollen-expressed genes share regulatory sequence elements. In an attempt to identify these pollen 5′-UTR elements, a statistical analysis was performed using 5′-UTR sequences of pollen- and sporophytic-expressed genes. The analysis revealed the presence of several pollen-specific 5′-UTR sequence elements. Assembly of the pollen 5′-UTR elements led to the identification of various consensus sequences, including those that previously have been demonstrated to play a role in the regulation of pollen gene expression. Several pollen 5′-UTR elements were found to be preferentially associated to genes from dicots, wet-type stigma plants, or plants containing bicellular pollen. Moreover, three sequence elements exhibited a preferential association to the 5′-UTR of pollen-expressed genes from Arabidopsis and Brassica napus. Functional implications of these observations are discussed.
机译:在花粉发育过程中,大量基因的转录导致出现不同的转录本。单子叶植物和双子叶植物物种的花粉中都存在相似的mRNA集,这表明确定花粉基因表达的遗传程序的进化保守性。在花粉中,基因表达的调节发生在转录和转录后水平。几种花粉转录本的5'-非翻译区(UTR)已显示对花粉基因表达的调控很重要。 5'-UTR序列的重要调控作用以及花粉中遗传程序的进化保守性导致了以下假设:花粉表达基因的5'-UTR共享调控序列元件。为了鉴定这些花粉的5'-UTR元件,使用花粉和孢子表达基因的5'-UTR序列进行统计分析。分析揭示了一些花粉特异性5'-UTR序列元件的存在。花粉5'-UTR元件的组装导致鉴定各种共有序列,包括先前已经证明在花粉基因表达的调节中起作用的那些。发现一些花粉5'-UTR元件优先与来自双子叶植物,湿型柱头植物或含有双细胞花粉的植物的基因相关。此外,三个序列元件显示出与来自拟南芥和甘蓝型油菜的花粉表达基因的5'-UTR优先结合。这些意见的功能含义进行了讨论。

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