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首页> 外文期刊>BMC Genomics >Genome-wide identification and expression profiling of auxin response factor (ARF) gene family in maize
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Genome-wide identification and expression profiling of auxin response factor (ARF) gene family in maize

机译:玉米生长素应答因子(ARF)基因家族的全基因组鉴定和表达谱

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Background Auxin signaling is vital for plant growth and development, and plays important role in apical dominance, tropic response, lateral root formation, vascular differentiation, embryo patterning and shoot elongation. Auxin Response Factors (ARFs) are the transcription factors that regulate the expression of auxin responsive genes. The ARF genes are represented by a large multigene family in plants. The first draft of full maize genome assembly has recently been released, however, to our knowledge, the ARF gene family from maize (ZmARF genes) has not been characterized in detail. Results In this study, 31 maize (Zea mays L.) genes that encode ARF proteins were identified in maize genome. It was shown that maize ARF genes fall into related sister pairs and chromosomal mapping revealed that duplication of ZmARFs was associated with the chromosomal block duplications. As expected, duplication of some ZmARFs showed a conserved intron/exon structure, whereas some others were more divergent, suggesting the possibility of functional diversification for these genes. Out of these 31 ZmARF genes, 14 possess auxin-responsive element in their promoter region, among which 7 appear to show small or negligible response to exogenous auxin. The 18 ZmARF genes were predicted to be the potential targets of small RNAs. Transgenic analysis revealed that increased miR167 level could cause degradation of transcripts of six potential targets (ZmARF3, 9, 16, 18, 22 and 30). The expressions of maize ARF genes are responsive to exogenous auxin treatment. Dynamic expression patterns of ZmARF genes were observed in different stages of embryo development. Conclusions Maize ARF gene family is expanded (31 genes) as compared to Arabidopsis (23 genes) and rice (25 genes). The expression of these genes in maize is regulated by auxin and small RNAs. Dynamic expression patterns of ZmARF genes in embryo at different stages were detected which suggest that maize ARF genes may be involved in seed development and germination.
机译:背景生长素信号转导对于植物的生长和发育至关重要,并且在顶端优势,热带反应,侧根形成,血管分化,胚胎构图和枝条伸长中起重要作用。生长素应答因子(ARF)是调节生长素应答基因表达的转录因子。 ARF基因由植物中的大型多基因家族代表。完整的玉米基因组组装的初稿最近已经发布,但是,据我们所知,玉米的ARF基因家族(ZmARF基因)尚未得到详细描述。结果在这项研究中,在玉米基因组中鉴定出31个编码ARF蛋白的玉米基因。结果表明,玉米ARF基因属于相关的姐妹对,染色体作图表明ZmARFs的重复与染色体的阻断重复有关。正如预期的那样,某些ZmARF的重复显示保守的内含子/外显子结构,而另一些则更趋异,表明这些基因功能多样化的可能性。在这31个ZmARF基因中,有14个在其启动子区域具有生长素应答元件,其中7个似乎对外源生长素的反应很小或可忽略。预测18个ZmARF基因是小RNA的潜在靶标。转基因分析显示,增加的miR167水平可能导致六个潜在靶标(ZmARF3、9、16、18、22和30)的转录本降解。玉米ARF基因的表达对外源生长素处理有响应。在胚胎发育的不同阶段观察到ZmARF基因的动态表达模式。结论与拟南芥(23个基因)和水稻(25个基因)相比,玉米ARF基因家族得到扩展(31个基因)。这些基因在玉米中的表达受生长素和小RNA的调控。检测到ZmARF基因在胚胎不同阶段的动态表达模式,这表明玉米ARF基因可能参与种子的发育和萌发。

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