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Differential expression of the genes involved in responses to water-deficit stress in peach trees cv. Chimarrita grafted onto two different rootstocks

机译:桃树简历中与缺水胁迫反应相关基因的差异表达。 Chimarrita嫁接到两种不同的砧木上

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Water deficit is responsible for a negative impact on agricultural systems. Several physiological, biochemical, and molecular processes are initiated as a response to water-deficit stress. Quantifying the differential expression of the genes involved in the response to water-deficit stress plays a key role in the development of molecular strategies for engineering water-stress tolerance in plants. Therefore, the present study aims to evaluate the expression of key genes involved in the water-deficit response process in peach trees cv. Chimarrita grafted onto two different rootstocks. The experimental design was completely randomized, with four treatments that correspond to the evaluation periods: day zero (control), the fourth, seventh, and ninth days of water-deficit stress. Leaf samples of each Chimarrita/rootstock combination were analyzed separately. The expression of the genes related to ethylene biosynthesis, osmotic adjustment, and carbohydrate metabolism, namely ACC oxidase , GTL , SDH , SIP1 , SOT1 , S6PDH , and P5CS was quantified by real-time quantitative polymerase chain reaction (RT-qPCR). A differential response was observed in the expression of the SDH , GTL , P5CS , and SIP1 genes between Chimarrita/rootstock (Aldrighi 1 and Tsukuba 2)combinations. In both combinations of grafting, the S6PDH gene presented the highest level of expression at the fourth day of stress. These results show that genes related to carbohydrate and proline metabolism are important molecular markers to identify variability to water-deficit tolerance in Prunus persica .
机译:缺水对农业系统造成负面影响。作为对缺水胁迫的响应,引发了几种生理,生化和分子过程。量化参与缺水胁迫反应的基因的差异表达在植物工程水分胁迫耐受性分子策略的发展中起着关键作用。因此,本研究旨在评估桃树简历中缺水响应过程中关键基因的表达。 Chimarrita嫁接到两种不同的砧木上。实验设计是完全随机的,有四种与评估期相对应的处理方法:零天(对照),缺水胁迫的第四天,第七天和第九天。每个Chimarrita /砧木组合的叶片样品分别进行分析。通过实时定量聚合酶链反应(RT-qPCR)定量与乙烯生物合成,渗透调节和碳水化合物代谢相关的基因的表达,即ACC氧化酶,GTL,SDH,SIP1,SOT1,S6PDH和P5CS。 Chimarrita /砧木(Aldrighi 1和Tsukuba 2)组合之间SDH,GTL,P5CS和SIP1基因的表达存在差异。在两种嫁接组合中,S6PDH基因在胁迫的第四天都表现出最高水平的表达。这些结果表明,与碳水化合物和脯氨酸代谢有关的基因是重要的分子标记,可用于鉴定桃李水分亏耐性的变异性。

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