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首页> 外文期刊>BMC research notes >Characterization of barley (Hordeum vulgare L.) NAC transcription factors suggests conserved functions compared to both monocots and dicots
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Characterization of barley (Hordeum vulgare L.) NAC transcription factors suggests conserved functions compared to both monocots and dicots

机译:大麦(Hordeum vulgare L.)NAC转录因子的特征表明与单子叶植物和双子叶植物相比,保守的功能

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Background The NAC transcription factor family is involved in the regulation of traits in both monocots and dicots of high agronomic importance. Understanding the precise functions of the NAC genes can be of utmost importance for the improvement of cereal crop plants through plant breeding. For the cereal crop plant barley ( Hordeum vulgare L.) only a few NAC genes have so far been investigated. Results Through searches in publicly available barley sequence databases we have obtained a list of 48 barley NAC genes ( HvNACs ) with 43 of them representing full-length coding sequences. Phylogenetic comparisons to Brachypodium, rice, and Arabidopsis NAC proteins indicate that the barley NAC family includes members from all of the eight NAC subfamilies, although by comparison to these species a number of HvNACs still remains to be identified. Using qRT-PCR we investigated the expression profiles of 46 HvNACs across eight barley tissues (young flag leaf, senescing flag leaf, young ear, old ear, milk grain, late dough grain, roots, and developing stem) and two hormone treatments (abscisic acid and methyl jasmonate). Conclusions Comparisons of expression profiles of selected barley NAC genes with the published functions of closely related NAC genes from other plant species, including both monocots and dicots, suggest conserved functions in the areas of secondary cell wall biosynthesis, leaf senescence, root development, seed development, and hormone regulated stress responses.
机译:背景NAC转录因子家族参与具有重要农艺意义的单子叶植物和双子叶植物的性状调控。理解NAC基因的精确功能对于通过植物育种改善谷物作物植物至关重要。迄今为止,对于谷类作物大麦(Hordeum vulgare L.)仅研究了少数NAC基因。结果通过在公开可获得的大麦序列数据库中进行搜索,我们获得了48个大麦NAC基因(HvNAC)的列表,其中43个代表全长编码序列。与腕足动物,水稻和拟南芥NAC蛋白的系统发育比较表明,大麦NAC家族包括来自所有8个NAC亚家族的成员,尽管与这些物种相比,仍有许多HvNAC尚待确定。使用qRT-PCR,我们调查了46种HvNAC在八种大麦组织(幼旗叶,衰老的旗叶,幼穗,老穗,奶粒,后期面团,根和发育中的茎)的表达谱和两种激素处理(脱落酸)酸和茉莉酸甲酯)。结论比较所选大麦NAC基因的表达谱与已发表的其他植物物种(包括单子叶植物和双子叶植物)的NAC基因紧密相关的功能,表明在次级细胞壁生物合成,叶片衰老,根系发育,种子发育等领域具有保守功能以及激素调节的压力反应。

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