首页> 外文期刊>Journal of Nuts >Study of Antagonistic Effects of Trichoderma Species on Growth of Verticillium dahliae, the Causal Agent of VerticilliumWilt of Pistachio under Laboratory Condition
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Study of Antagonistic Effects of Trichoderma Species on Growth of Verticillium dahliae, the Causal Agent of VerticilliumWilt of Pistachio under Laboratory Condition

机译:木霉菌种对大黄萎病菌的拮抗作用的研究,开心果黄萎病的病原体

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Verticillium wilt is a serious disease of pistachio caused by Verticilliumdahliae. Control of the disease is difficult due to soil borne nature of the causal agent. Verticillium wilt has been biologically controlled by Trichoderma spp. In the present study, Trichoderma spp. was isolated from soils of pistachio orchards and their effect was investigated on radial growth of Verticillium dahliae by using dual culture and production of volatile and non-volatile metabolites. Five isolates of T. harzianum and one isolate of T. asperellum,T.koningii and T. crassum were used in the present study. All the isolates of Trichoderma produced volatile and non-volatile metabolites that reduced radial growth of the pathogen. T. harzianum and T. koningii isolates had the highest effect on radial growth of the pathogen but T. harzianum and T. crassum showed the lowest effect in non-volatile test. Six days after culture of pathogen on the medium was the best time for study of effect of the non-volatile metabolites. In volatile metabolite test, T. harzianum and T. koningii reduced radial growth of V. dahliae further than others. Overally, T. harzianum , and T. koningii isolates showed the highest inhibitory effect of radial growth of V. dahliae.
机译:黄萎病是由黄萎病引起的一种严重的开心果病。由于病原体的土壤传播特性,很难控制疾病。黄萎病菌已被木霉属物种控制。在本研究中,木霉属。从开心果园土壤中分离得到黄花菜,并通过双重培养以及挥发性和非挥发性代谢产物的产生,研究了它们对黄萎病菌径向生长的影响。在本研究中,使用了哈茨木霉(T. harzianum)的五种分离物和曲霉(T. asperellum),康宁木(T. koningii)和棉铃木(T. crassum)的五种分离物。木霉的所有分离物均产生挥发性和非挥发性代谢物,从而减少了病原体的径向生长。哈茨木霉和康宁木霉对病原体径向生长的影响最大,但在非挥发性试验中哈茨木霉和景天属的分离效果最低。病原体在培养基上培养六天后,是研究非挥发性代谢物作用的最佳时间。在挥发性代谢物测试中,哈茨木霉和康宁木霉比大麦更进一步降低了大麦弧菌的径向生长。总的来说,哈茨木霉(T. harzianum)和康宁木霉(T. koningii)分离株对大丽弧菌径向生长的抑制作用最高。

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