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首页> 外文期刊>Fresenius environmental bulletin >INDUCTION OF SYSTEMIC RESISTANCE AGAINST MELOIDOGYNE INCOGNITA BY DIFFERENT CHEMICAL AND BIOLOGICAL INDUCERS IN TOMATO PLANTS
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INDUCTION OF SYSTEMIC RESISTANCE AGAINST MELOIDOGYNE INCOGNITA BY DIFFERENT CHEMICAL AND BIOLOGICAL INDUCERS IN TOMATO PLANTS

机译:番茄不同化学和生物诱导物诱导对拟南芥的系统抗性

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Root-knot, caused by Meloidogyne incognita, is a soilborne disease that causes severe damage and large losses in tomato production worldwide. For this reason, biological and chemical elicitors of induced resistance were examined for their ability to protect tomato from root-knot disease under glasshouse conditions. Treatment of tomato roots with B. thuringiensis as a soil drench resulted in the highest reduction in the number of galls in root system, while the nematicide Rugby ? 20%c CS and salicylic acid (SA) showed the highest reduction in egg-masses and nematode populations. Moreover, pre-treatment of tomato roots with silica nanoparticles (SINPs) exhibited the highest increase in the shoot fresh and dry weights. The activities of defence related enzymes, peroxidase (POX) and polyphenol oxidase (PPO), were significantly increased in treated tomato plants, SA and ascorbic acid treatments showed the best results in this respect. The best transcription level of SA-inducible gene PR2 was found in SA treated tomato plants followed by the Allium sativum extract treatment. Therefore, B. Thuringiensis, SA and SINPs could provide new alternatives for chemical pesticides in integrated pest management strategies against root- knot diseases that cause synergistic yield losses.
机译:根结线虫(Meloidogyne incognita)引起的根结病是一种土壤传播的疾病,在世界范围内引起严重的损害和番茄生产的重大损失。因此,研究了诱导抗性的生物学和化学引发剂在温室条件下保护番茄免受根结病的能力。用苏云金芽孢杆菌作为土壤浸液处理番茄根部,可最大程度地减少根系中胆汁的减少,而杀线虫剂是Rugby®。 20%c CS和水杨酸(SA)显示卵重和线虫种群减少最多。此外,用二氧化硅纳米颗粒(SINP)预处理番茄根表现出的茎干鲜重和干重增加最多。在处理过的番茄植株中,防御相关酶,过氧化物酶(POX)和多酚氧化酶(PPO)的活性显着增加,SA和抗坏血酸处理在这方面显示出最好的效果。在SA处理的番茄植株中发现SA诱导基因PR2的最佳转录水平,然后进行大蒜提取物处理。因此,苏云金芽孢杆菌,SA和SINPs可以在针对引起协同增效损失的根结病的综合害虫管理策略中为化学农药提供新的替代方法。

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