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Functional analysis of Arabidopsis and maize transgenic lines overexpressing the ADP-ribose/NADH pyrophosphohydrolase, AtNUDX7

机译:拟南芥和玉米转基因素的功能分析过表达ADP-核糖/ NADH焦磷酸酶,ATNUDX7

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摘要

The conserved poly(ADP-ribosyl)ation (PAR) pathway consists of three genetic components that are potential targets to modulate the plant's energy homeostasis upon stress with the aim to improve yield stability in crops and help secure food supply. We studied the role of the PAR pathway component ADP-ribose/NADH pyrophosphohydrolase (AtNUDX7) in yield and mild drought stress by using a transgenic approach in Arabidopsis thaliana and maize (Zea mays). Arabidopsis AtNUDX7 cDNA was overexpressed in Arabidopsis and maize by means of the constitutive Cauliflower Mosaic Virus 35S promoter and the strong constitutive Brachypodium distachyon pBdEF1 alpha promoter, respectively. Overexpression of AtNUDX7 in Arabidopsis improved seed parameters that were measured by a novel, automated method, accelerated flowering and reduced inflorescence height. This combination of beneficial traits suggested that AtNUDX7 overexpression in Arabidopsis might enhance the ADP-ribose recycling step and maintain energy levels by supplying an ATP source in the poly(ADP-ribosyl) ation energy homeostasis pathway. Arabidopsis and maize lines with high, medium and low overexpression levels of the AtNUDX7 gene were analysed in automated platforms and the inhibition of several growth parameters was determined under mild drought stress conditions. The data showed that the constitutive overexpression of the Arabidopsis AtNUDX7 gene in Arabidopsis and maize at varying levels did not improve tolerance to mild drought stress, but knocking down AtNUDX7 expression did, however at the expense of general growth under normal conditions.
机译:保守的聚(ADP-核糖基)半月(PAR)途径由三种遗传成分组成,该组分是调节植物能量稳定性的潜在靶标,以提高作物中的产量稳定性并帮助安全食品供应。我们通过使用拟南芥和玉米(Zea Mays)的转基因方法,研究了Par途径组分Adp-ribose / NADH焦磷酸-NADH-核糖磷酸酶(ATNUDX7)的作用和轻度干旱胁迫。 Arabidopsis Atnudx7 cDNA在拟南芥和玉米中过表达,借助于组成型花椰菜马赛克病毒35s启动子和强组成型刷新型Disthachyon PBDef1α促进剂。拟南芥中ATNUDX7的过度表达改善了通过新颖,自动化方法,加速开花和降低的花序高度测量的种子参数。这种有益性状的这种组合表明Atnudx7在拟南芥中的过表达可能通过在聚(ADP-核糖基)Heation稳态途径中提供ATP源来增强ADP核糖再循环步骤并保持能量水平。在自动平台中分析了ATNUDX7基因的高,中和低过表达水平的拟南芥和玉米线,并在轻度干旱胁迫条件下测定几种生长参数的抑制。该数据显示拟南芥ATNUDX7基因的组成型过表达在不同水平下的拟南芥和玉米的含量并未改善对轻度干旱胁迫的耐受性,但敲击ATNUDX7表达,然而,在正常情况下牺牲了一般生长。

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