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Induction of Isoperoxidases in Resistant and Susceptible Tomato Cultivars byMeloidogyne incognita

机译:抗性和易感番茄品种中过氧化物酶的诱导。南方根结线虫

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摘要

Isoperoxidases were detected in resistant Rossol and susceptible Roma VF tomato roots uninfected and infected by Meloidogyne incognita. Syringaldazine, guaiacol, p-phenylenediamine-pyrocatechol (PPD-PC), and indoleacetic acid (IAA) were used as substrates, and the corresponding peroxidative activities were detected either in cytoplasmic or in cell wall fractions, except for IAA oxidase, which was measured in soluble and microsomal fractions. Isoperoxidase activities and cellular locations were induced differently in resistant and susceptible cultivars by nematodes. Nematode infestation markedly enhanced syringaldazine oxidase activity in cell walls of the resistant cultivar. This isoperoxidase is involved in the last step of lignin deposition in plants. Conversely, the susceptible cultivar reacted to M. incognita infection with an increase in cytoplasmic PPD-PC oxidase activity, which presumedly is involved in ethylene production; no changes in cell wall isoperoxidases were observed. IAA oxidase was inhibited in susceptible plants after nematode inoculation, whereas in resistant plants this activity increased in the soluble fraction and decreased in the microsomal fraction.
机译:在抗性Rossol和易感Roma VF番茄根中未被Meloidogyne incognita感染和感染的过程中检测到过氧化物酶。丁香嗪,愈创木酚,对苯二胺-邻苯二酚(PPD-PC)和吲哚乙酸(IAA)被用作底物,并且在细胞质或细胞壁组分中检测到了相应的过氧化活性,但IAA氧化酶除外在可溶性和微粒体部分。线虫在抗性和易感品种中诱导了过氧化物酶的活性和细胞位置的变化。线虫侵染显着增强了抗性品种细胞壁上的丁香醛嗪氧化酶活性。该过氧化物酶参与木质素在植物中沉积的最后步骤。相反,易感品种对隐孢子虫感染起反应,其胞质PPD-PC氧化酶活性增加,这可能与乙烯的产生有关。没有观察到细胞壁过氧化物酶的变化。线虫接种后,IAA氧化酶在易感植物中被抑制,而在抗性植物中,该活性在可溶性级分中增加而在微粒体级分中降低。

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