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Role of defense enzymes and phenolics in resistance of wheat crop (Triticum aestivum L.) towards aphid complex

机译:防御酶和酚类对蚜虫复合物的抗性抗体和酚类的作用

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摘要

Herbivory damage leads to induction of rapid signals and responses in plants such as oxidative burst, accumulation of secondary metabolites and defensive proteins. Response of various defensive enzymes and secondary metabolites in flag leaf samples of six bread wheat varieties against aphid feeding was investigated. Six bread wheat varieties, namely PBW 621 and HD 2967 (timely sown irrigated), PBW 590 and PBW 658 (late sown irrigated), and PBW 644 and PBW 660 (timely sown rainfed) were grown under the aphid infested and uninfested conditions and were sampled at a regular interval to analyze the biochemical changes caused by aphid feeding. A tremendous increase in the overall activity of various enzymes namely superoxide dismutase, glutathione reductase, phenylalanine ammonia lyase and polyphenol oxidase was observed, all of which play an important role in plants defense towards aphid feeding. Each wheat genotype showed an overall difference in their defensive activity towards aphid feeding. However, certain genotypes under different conditions showed significantly less susceptibility towards aphid damage. Abbreviations: GR: glutathione reductase; HPR: host plant resistance; PAL: phenylalanine ammonia lyase; PPO: poly phenol oxidase; POD: peroxidase; SOD: superoxide dismutase
机译:取食损害导致快速的信号和响应的诱导在植物如氧化猝发,次级代谢物和防御蛋白的积累。各种防御酶和针对蚜虫馈送6个面包小麦品种旗叶样品中的次级代谢物的反应进行了研究。六个面包小麦品种,即PBW 621和HD 2967(适时播种灌溉),PBW 590和PBW 658(晚播灌溉),和PBW 644和PBW 660(适时播种旱作)蚜虫下生长出没和未感染的条件和人以规则的间隔取样,以分析所造成的蚜虫馈送的生化变化。在各种酶即超氧化物歧化酶,谷胱甘肽还原酶,苯丙氨酸解氨酶和多酚氧化酶的整体活动大幅增加观察到,所有这些都发挥的防卫对蚜虫喂养了重要的作用。每个小麦基因型表现出他们的防守对活动喂养蚜虫的总体差异。然而,在不同条件下某些基因型显示出朝向蚜损伤易感性显著以下。缩写:GR:谷胱甘肽还原酶; HPR:寄主植物抗性; PAL:苯丙氨酸氨裂合酶; PPO:聚酚氧化酶; POD:过氧化物酶; SOD:超氧化物歧化酶

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    H. Kaur; P. K. Salh; B. Singh;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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