首页> 外文期刊>The Madras Agricultural Journal >Analysis of Peroxidase and Polyphenol Oxidase Isozyme Profiles in Groundnut Plants Treated with Streptomyces sp.
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Analysis of Peroxidase and Polyphenol Oxidase Isozyme Profiles in Groundnut Plants Treated with Streptomyces sp.

机译:链霉菌处理的花生植株过氧化物酶和多酚氧化酶同工酶谱分析

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摘要

Isozyme analysis was carried out to determine whether Peroxidase (PO) and Polyphenol oxidase (PPO) activities were induced in groundnut (Arachis hypogaea L.) leaves by application of antagonistic Streptomyces sp. strains through seed and soil. PO isozyme analysis of protein extracts from control groundnut plants exhibited two isozymes (PO-1 and PO-2). Seed treatment or seed treatment plus soil application with Streptomyces sp. strain PDK strongly induced the activity of PO-2. In addition, two new POisozymes (PO-3 and PO-4) were also appeared in the Streptomyces sp. strain PDK treated plants. No significant change in the PO isozyme profile of groundnut was observed in plants treated with other Streptomyces sp. strains viz., CBE and MDU through seed.However increase in the activity of PO-2 was observed in plants treated with MDU through seed plus soil. PPO isozyme analysis of protein extracts from control groundnut plants exhibited two isozymes (PPO-1 and PPO-2). An increase in the activities of both PPO-1 and PPO-2 compared to control was observed in plants treated with all three strains of Streptomyces sp. through seed or seed plus soil. The increased activities of both PO and PPO in groundnut plants upon treatment with Streptomyces sp. might have contributed to resistance of groundnut against stem rot caused by Sclerotium rolfsii.
机译:进行同工酶分析以确定是否通过施用拮抗链霉菌属菌种在花生(花生)叶片中诱导了过氧化物酶(PO)和多酚氧化酶(PPO)的活性。穿过种子和土壤。从对照花生植物提取的蛋白质的PO同工酶分析显示出两种同工酶(PO-1和PO-2)。用链霉菌种进行种子处理或种子处理再加上土壤处理。 PDK菌株强烈诱导PO-2的活性。此外,链霉菌中还出现了两个新的同工酶(PO-3和PO-4)。株PDK处理过的植物。在用其他链霉菌属sp处理的植物中,未观察到花生PO同工酶谱的显着变化。通过种子加土壤处理的MDU处理过的植物中观察到PO-2活性增加。从对照花生植物提取的蛋白质的PPO同工酶分析显示出两种同工酶(PPO-1和PPO-2)。在用链霉菌属的所有三种菌株处理的植物中均观察到与对照相比,PPO-1和PPO-2的活性均增加。通过种子或种子加土壤。链霉菌属sp处理后花生植株中PO和PPO的活性增加。可能有助于花生抵抗由小核盘菌引起的茎腐病。

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