Christiansen Michael W, Holm Preben B, Gregersen Per L
Department of Molecular Biology and Genetics, Aarhus University, Research Centre Flakkebjerg, 4200 Slagelse, Denmark.
BMC Res Notes. 2011 Aug 19;4:302. doi: 10.1186/1756-0500-4-302.
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.
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).
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.
NAC转录因子家族参与调控具有重要农艺价值的单子叶和双子叶植物的性状。了解NAC基因的确切功能对于通过植物育种改良谷类作物至关重要。对于谷类作物大麦(Hordeum vulgare L.),迄今为止仅研究了少数NAC基因。
通过在公开可用的大麦序列数据库中搜索,我们获得了一份包含48个大麦NAC基因(HvNACs)的列表,其中43个代表全长编码序列。与短柄草、水稻和拟南芥NAC蛋白的系统发育比较表明,大麦NAC家族包括所有八个NAC亚家族的成员,尽管与这些物种相比,仍有一些HvNACs有待鉴定。我们使用qRT-PCR研究了46个HvNACs在八个大麦组织(幼嫩旗叶、衰老旗叶、幼穗、老穗、乳熟期籽粒、面团后期籽粒、根和发育中的茎)以及两种激素处理(脱落酸和茉莉酸甲酯)下的表达谱。
将选定的大麦NAC基因的表达谱与来自其他植物物种(包括单子叶和双子叶植物)的密切相关NAC基因的已发表功能进行比较,表明在次生细胞壁生物合成、叶片衰老、根发育、种子发育和激素调节的应激反应方面具有保守功能。