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首页> 外文期刊>American Journal of Plant Sciences >Enzymes of Phenylpropanoid Metabolism Involved in Strengthening the Structural Barrier for Providing Genotype and Stage Dependent Resistance to Karnal Bunt in Wheat
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Enzymes of Phenylpropanoid Metabolism Involved in Strengthening the Structural Barrier for Providing Genotype and Stage Dependent Resistance to Karnal Bunt in Wheat

机译:苯丙烷代谢酶参与增强结构障碍,为小麦的核仁提供基因型和阶段依赖性的抗性

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The role of lignifications and enzymes involved in the phenylpropanoid (PP) biosynthesis i.e. phenylalanine ammonia lyase (PAL), Peroxidase (POD), Polyphenol oxidase (PPO) in providing resistance to Karnal Bunt (KB) during different developmental stages of resistant (HD-29) and susceptible genotype (WH-542) and its recombinant inbred lines (RILs) of wheat were investigated. The enzymes of PP pathway were expressed constitutively in both the susceptible and resistant genotype. However, the activity was higher in all the developmental stages of resistant genotype and its RILs, indicating that this genotype has a significant higher basal level of these enzymes as compared to the susceptible line and could be used as marker(s) to define KB resistance. The activity of PAL and POD was significantly higher in WSv stage (Z = 16) while the specific activity of PPO was higher in WS3 (Z = 77) stage as compared to the other physiological stages in both the genotypes. In resistant genotype the lignin content increased two-fold and three-fold at WS2 and WS3 stage, respectively, while in susceptible genotype no significant increase in lignin content was observed. The pathway might be associated with the enhancement of structural defense barrier due to lignifications of cell wall as evident from the enhanced synthesis of lignin in all the stages of resistant genotype. Our results clearly indicate the possible role of enzymes of PP metabolism provides genotype and stage dependant structural barrier resistance in wheat against KB.
机译:木质素化和参与苯丙氨酸(PP)生物合成的酶(即苯丙氨酸氨裂合酶(PAL),过氧化物酶(POD),多酚氧化酶(PPO))在抗性(HD- 29)和小麦的易感基因型(WH-542)及其重组自交系(RILs)进行了研究。 PP途径的酶在易感和抗性基因型中均组成型表达。但是,在抗性基因型及其RIL的所有发育阶段,其活性都较高,这表明与易感品系相比,该基因型具有较高的这些酶基础水平,可用作定义KB抗性的标记。与两种基因型的其他生理阶段相比,WSv期(Z = 16)中PAL和POD的活性显着较高,而WS3期(Z = 77)中PPO的比活性较高。在抗性基因型中,木质素含量在WS2和WS3阶段分别增加了两倍和三倍,而在易感基因型中,木质素含量没有显着增加。该途径可能与由于细胞壁的木质化引起的结构防御屏障的增强有关,从抗性基因型的所有阶段中木质素合成的增强可以明显看出。我们的结果清楚地表明,PP代谢酶可能在小麦对KB的基因型和阶段依赖性结构屏障抗性中发挥作用。

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