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Investigating the effect of drought stress on expression of WRKY1 and EREBP1 genes and antioxidant enzyme activities in lemon balm (Melissa Officinalis L.)

机译:研究干旱胁迫对柠檬香脂(Melissa Officinalis L.)中WRKY1和EREBP1基因表达及抗氧化酶活性的影响

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摘要

Drought stress is a severe environmental constraint to plant productivity. In this study, gene expression of WRKY1 and EREBP1 genes and activity of two enzymes were investigated in two genotypes, G9 (as resistance) and G12 (as susceptible) of 10 days-old lemon balm seedlings. Experiments were done according to factorial design on the base of completely randomized design with three replications for expression analysis and enzyme assays. Seedlings were cultured in MS medium suspensions, including 0, 3, 6, 12 and 15 % w/v PEG 6000. Leaf samples were subsequently collected at 0, 3, 6, 24, 48, 72 h after culture. According to the results of the enzyme assay, SOD activity in resistant genotype was more than in sensitive one. POD activity was high in G9 in severe drought condition and in G12 this activity was increased at initial times of drought stress. The survey results revealed that the expression levels of both genes, EREBP1 and WRKY1, in G9 variety were more than G12, and in this respect we can say that the G9 variety is more resistant to drought.
机译:干旱胁迫是严重影响植物生产力的环境因素。在这项研究中,对10天龄香脂幼苗的G9(作为抗性)和G12(作为易感性)这两个基因型,研究了WRKY1和EREBP1基因的基因表达以及两种酶的活性。根据因子设计在完全随机设计的基础上进行了实验,并进行了三个重复的表达分析和酶测定。将幼苗在MS培养基悬浮液中培养,包括0、3、6、12和15%w / v PEG 6000.随后在培养后0、3、6、24、48、72小时收集叶片样品。根据酶测定的结果,抗性基因型中的SOD活性高于敏感基因型中的SOD活性。在严重干旱条件下,G9中的POD活性较高,而在G12中,该活性在干旱胁迫的初始时间增加。调查结果表明,G9品种中EREBP1和WRKY1这两个基因的表达水平均高于G12,从这个方面可以说G9品种对干旱的抵抗力更高。

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