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The Rose (Rosa hybrida) NAC Transcription Factor 3 Gene, RhNAC3, Involved in ABA Signaling Pathway Both in Rose and Arabidopsis

机译:玫瑰(Rosa hybrida)NAC转录因子3基因RhNAC3参与了玫瑰和拟南芥的ABA信号通路。

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摘要

Plant transcription factors involved in stress responses are generally classified by their involvement in either the abscisic acid (ABA)-dependent or the ABA-independent regulatory pathways. A stress-associated NAC gene from rose (Rosa hybrida), RhNAC3, was previously found to increase dehydration tolerance in both rose and Arabidopsis. However, the regulatory mechanism involved in RhNAC3 action is still not fully understood. In this study, we isolated and analyzed the upstream regulatory sequence of RhNAC3 and found many stress-related cis-elements to be present in the promoter, with five ABA-responsive element (ABRE) motifs being of particular interest. Characterization of Arabidopsis thaliana plants transformed with the putative RhNAC3 promoter sequence fused to the β-glucuronidase (GUS) reporter gene revealed that RhNAC3 is expressed at high basal levels in leaf guard cells and in vascular tissues. Moreover, the ABRE motifs in the RhNAC3 promoter were observed to have a cumulative effect on the transcriptional activity of this gene both in the presence and absence of exogenous ABA. Overexpression of RhNAC3 in A. thaliana resulted in ABA hypersensitivity during seed germination and promoted leaf closure after ABA or drought treatments. Additionally, the expression of 11 ABA-responsive genes was induced to a greater degree by dehydration in the transgenic plants overexpressing RhNAC3 than control lines transformed with the vector alone. Further analysis revealed that all these genes contain NAC binding cis-elements in their promoter regions, and RhNAC3 was found to partially bind to these putative NAC recognition sites. We further found that of 219 A. thaliana genes previously shown by microarray analysis to be regulated by heterologous overexpression RhNAC3, 85 are responsive to ABA. In rose, the expression of genes downstream of the ABA-signaling pathways was also repressed in RhNAC3-silenced petals. Taken together, we propose that the rose RhNAC3 protein could mediate ABA signaling both in rose and in A. thaliana.
机译:涉及胁迫反应的植物转录因子通常通过其参与脱落酸(ABA)依赖性或ABA非依赖性调节途径来分类。先前发现,来自玫瑰(Rosa hybrida)的与应力相关的NAC基因RhNAC3可增加玫瑰和拟南芥的脱水耐性。但是,RhNAC3作用涉及的调节机制仍不完全了解。在这项研究中,我们分离并分析了RhNAC3的上游调控序列,发现启动子中存在许多与应激相关的顺式元件,其中五个ABA响应元件(ABRE)基序特别受关注。用与β-葡萄糖醛酸糖苷酶(GUS)报道基因基因融合的推定的RhNAC3启动子序列转化的拟南芥植株的特征表明,RhNAC3在叶片保卫细胞和血管组织中以高基础水平表达。此外,在存在和不存在外源ABA的情况下,观察到RhNAC3启动子中的ABRE基序对该基因的转录活性具有累积作用。拟南芥中RhNAC3的过表达导致种子萌发过程中ABA过敏,并在ABA或干旱处理后促进叶片闭合。另外,与单独用载体转化的对照系相比,在过表达RhNAC3的转基因植物中通过脱水在更大程度上诱导了11种ABA响应基因的表达。进一步的分析表明,所有这些基因在其启动子区域均包含NAC结合顺式元件,并且发现RhNAC3与这些假定的NAC识别位点部分结合。我们进一步发现以前由微阵列分析显示的219个拟南芥基因受异源过表达RhNAC3的调节,其中85个对ABA有响应。在玫瑰中,RhNAC3沉默的花瓣也抑制了ABA信号通路下游基因的表达。两者合计,我们建议玫瑰RhNAC3蛋白可以介导玫瑰和 A中的ABA信号。 Thaliana

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