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RhNAC3, a stress- associated NAC transcription factor, has a role in dehydration tolerance through regulating osmotic stress- related genes in rose petals

机译:RHNAC3,应激相关的NAC转录因子,通过调节玫瑰花瓣中的渗透胁迫相关基因具有脱水耐受的作用

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Petal cell expansion depends on cell wall metabolism, changes in cell turgor pressure and restructuring of the cytoskeleton, and recovery ability of petal cell expansion is defined as an indicator of dehydration tolerance in flowers. We previously reported that RhNAC2, a development-related NAC domain transcription factor, confers dehydration tolerance through regulating cell wall-related genes in rose petals. Here, we identify RhNAC3, a novel rose SNAC gene, and its expression in petals induced by dehydration, wounding, exogenous ethylene and abscisic acid (ABA). Expression studies in Arabidopsis protoplasts and yeast show that RhNAC3 has transactivation activity along its full length and in the carboxyl-terminal domain. Silencing RhNAC3 in rose petals by virus-induced gene silencing (VIGS) significantly decreased the cell expansion of rose petals under rehydration conditions. In total, 24 of 27 osmotic stress-related genes were down-regulated in RhNAC3-silenced rose petals, while only 4 of 22 cell expansion-related genes were down-regulated. Overexpression of RhNAC3 in Arabidopsis gave improved drought tolerance, with lower water loss of leaves in transgenic plants. Arabidopsis ATH1 microarray analysis showed that RhNAC3 regulated the expression of stress-responsive genes in overexpressing lines, and further analysis revealed that most of the RhNAC3-up-regulated genes were involved in the response to osmotic stress. Comparative analysis revealed that different transcription regulation existed between RhNAC3 and RhNAC2. Taken together, these data indicate that RhNAC3, as a positive regulator, confers dehydration tolerance of rose petals mainly through regulating osmotic adjustment-associated genes.
机译:花瓣细胞膨胀取决于细胞壁代谢,细胞磨削压力的变化和细胞骨架的重组,以及花瓣细胞膨胀的回收能力被定义为花中脱水耐受的指标。我们之前报道了通过调节玫瑰花瓣中的细胞壁相关基因来赋予脱水耐受脱水耐受性的rhNAC2。在这里,我们识别rhNAC3,一种新型玫瑰SNAC基因,其在脱水,伤口,外源乙烯和脱落酸(ABA)诱导的花瓣中的表达。拟南芥原生质体和酵母的表达研究表明,rhNAC3具有沿其全长和羧基末端结构域的转移活性。病毒诱导的基因沉默(Vigs)在玫瑰花瓣中沉默的rhnac3显着降低了再水合条件下玫瑰花瓣的细胞扩张。总共24个渗透应激相关基因在rhnac3沉默的玫瑰花瓣中抑制,而22个细胞膨胀相关基因中只有4个中调节。拟南芥rhNAc3的过度表达给予改善的耐旱性,转基因植物中的叶片较低。 Arabidopsis Ath1微阵列分析表明,rhNAC3调节过度表达线中应激响应基因的表达,进一步的分析表明,大多数rhNAC3上调基因涉及对渗透胁迫的反应。比较分析显示,rhNAC3和rhNAc2之间存在不同的转录调节。总之,这些数据表明,作为阳性调节器,rhNAC3主要通过调节渗透渗透调节相关基因来赋予玫瑰花瓣的脱水耐受性。

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