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Improvement of Biocontrol of Damping-off and Root Rot/Wilt of Faba Bean by Salicylic Acid and Hydrogen Peroxide

机译:水杨酸和过氧化氢对蚕豆阻尼和根腐病生物防治的改善

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摘要

Rhizoctonia solani, Fusarium solani, F. oxysporum, and Macrophomina phaseolina were found to be associated with root rott and wilt symptoms of faba bean plants collected from different fieldes in New Valley governorate, Egypt. All the obtained isolates were able to attack faba bean plants (cv. Giza 40) causing damping-off and root rot/wilt diseases. R. solani isolates 2 and 5, F. solani isolate 8, F. oxysporum isolate 12 and M. phaseolina isolate 14 were the more virulent ones in the pathogenicity tests. Biocontrol agents (Trichoderma viride and Bacillus megaterium) and chemical inducers (salicylic acid [SA] and hydrogen peroxide) individually or in combination were examined for biological control of damping-off and root rot/wilt and growth promoting of faba bean plants in vitro and in vivo. Both antagonistic biocontrol agents and chemical inducers either individually or in combination inhibited growth of the tested pathogenic fungi. Biocontrol agents combined with chemical inducers recorded the highest inhibited growth especially in case SA + T. viride and SA + B. megaterium. Under green house and field conditions, all treatments significantly reduced damping-off and root rot/wilt severity and increased of survival plants. Also, these treatments increased fresh and weights of the survival plants in pots compared with control. The combination between biocontrol agents and chemical inducers were more effective than used of them individually and SA + T. viride was the best treatment in this respect. Also, under field conditions, all these treatments significantly increased growth parameters (plant height and number of branches per plant) and yield components (number of pods per plant and number of seeds per plant, weight of 100 seeds and total yield per feddan) and protein content in both seasons (2010~2011 and 2011~2012). Faba bean seeds soaked in SA + T. viride and SA + B. megaterium were recorded the highest growth parameters and yield components. Generally, the combination between biocontrol agents and chemical inducers recorded the best results for controlling damping-off and root rot/wilt diseases in greenhouse and field with addition improved plant growth and increased yield components in field.
机译:发现从埃及新谷省不同地区收集到的蚕豆根腐烂和枯萎症状与茄子枯萎病,镰刀镰刀菌,尖孢镰刀菌和菜豆大孢子病有关。所有获得的分离株都能够攻击蚕豆植物(ciza。Giza 40),引起减毒和根腐病/枯萎病。在致病性测试中,茄形假丝酵母分离株2和5,茄形假丝酵母分离株8,尖孢镰刀菌分离株12和菜豆分枝杆菌分离株14是更具毒性的。检查了单独或组合使用的生物防治剂(绿色木霉和巨大芽孢杆菌)和化学诱导剂(水杨酸[SA]和过氧化氢)对蚕豆植物的抑制作用和根腐烂/枯萎以及促进生长的生物学控制。体内。拮抗性生物防治剂和化学诱导剂都可以单独或联合抑制被测病原真菌的生长。生物防治剂与化学诱导剂的结合对生长的抑制作用最高,特别是在SA + T. viride和SA + B. Megaterium的情况下。在温室和田间条件下,所有处理均显着降低了抑制作用和根腐烂/枯萎的严重性,并增加了存活植物的数量。而且,与对照相比,这些处理增加了盆中存活植物的新鲜度和重量。生物防治剂和化学诱导剂的组合比单独使用更有效,SA + T. viride在这方面是最好的治疗方法。同样,在田间条件下,所有这些处理均显着增加了生长参数(植物高度和每株植物的枝条数量)和产量构成部分(每株植物的豆荚数和每株植物的种子数,100粒种子的重量和每株联邦制总产量)和两个季节(2010〜2011和2011〜2012)中的蛋白质含量。将蚕豆种子浸入SA + T. viride和SA + B中。记录了最高的生长参数和产量成分。一般而言,生物防治剂和化学诱导剂的结合在控制温室和田间减湿和根腐烂病方面取得了最佳效果,此外还改善了植物的生长并增加了田间的产量。

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