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Differences in the drought stress response of DREB2 and CAT1 genes and evaluation of related physiological parameters in some bread wheat cultivars

机译:一些面包小麦品种DREB2和CAT1基因干旱胁迫响应的差异及相关生理参数的评价

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ABSTRACT Abiotic stresses such as drought are among the most significant environmental stress causes in economically important crop plants including wheat ( Triticum aestivum L.) and improving their yield is a major goal of plant breeding. In this study, we analysed expression of dehydration responsive element binding factor ( DREB2 ), and an important antioxidant enzyme gene CAT1 in flag leaf of three bread wheat cultivars named Kavir, Kalheydari and Shahpasand under drought stress by RT-qPCR. In another section, physiological parameters including catalase enzyme (EC 1.11.1.6), relative water content (RWC) and chlorophyll content (a,b and total) were analysed. The cultivars were planted in a randomized complete block design with three replicates in normal and drought stress conditions on experimental field in 2013. Differential expression patterns of the genes DREB2 and CAT1 were observed in cultivars. The observed trend was the high induction in the expression of genes under drought stress. The expression of DREB2 was more than CAT1 in drought stress. The relative genes expression showed significant correlation with the catalase, RWC and chlorophyll b. Under drought stress, Kavir had higher expression of DREB2 and CAT1 , activity of catalase, RWC, chlorophyll content (a, b and total) than the other cultivars. According to increasing of drought tolerance through the expression of these genes, it can be concluded that transferring of these genes may enhance drought tolerance in high-yield wheat cultivars.
机译:摘要干旱等非生物胁迫是经济上重要的作物,包括小麦(Triticum aestivum L.)引起的最重要的环境胁迫原因之一,提高单产是植物育种的主要目标。在这项研究中,我们通过RT-qPCR分析了干旱胁迫下三个面包小麦品种Kavir,Kalheydari和Shahpasand的旗叶中脱水响应元件结合因子(DREB2)和重要的抗氧化酶基因CAT1的表达。在另一部分中,分析了包括过氧化氢酶(EC 1.11.1.6),相对水含量(RWC)和叶绿素含量(a,b和总含量)在内的生理参数。 2013年,在正常和干旱胁迫条件下,在实验田上以随机完整区组设计种植了3个重复样品。在品种中观察到了DREB2和CAT1基因的差异表达模式。观察到的趋势是干旱胁迫下基因表达的高度诱导。干旱胁迫下DREB2的表达高于CAT1。相关基因表达与过氧化氢酶,RWC和叶绿素b显着相关。在干旱胁迫下,Kavir的DREB2和CAT1的表达,过氧化氢酶的活性,RWC,叶绿素含量(a,b和总含量)均高于其他品种。根据通过表达这些基因增加的耐旱性,可以得出结论,这些基因的转移可以增强高产小麦品种的耐旱性。

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