荧光假单胞菌和铁螯合铁对辣椒根腐病和枯萎病病原菌尖孢镰刀菌的防治效果

Ali Nasser Ali Al-aamel, B. Al-maliky
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摘要

研究了荧光假单胞菌PO2和螯合铁-EDDHA(Fe)在0.5%浓度下对辣椒枯萎病Fo6的生物防治活性及其相互作用。在体外,PO2显著抑制Fo6的生长,抑制率为83.33%,螯合铁显著降低Fo6的抑制率为66.67%,但不影响PO2的生长。盆栽试验结果表明,处理(Fo6+PO2+Fe)在降低发病率和疾病严重程度方面表现出最高的显著差异,与对照(仅病原体)(100、85)%相比,分别达6.67%。此外,与对照(未接种植物)(分别为12.1、75.67、1.83、5.33)g相比,处理(不含病原体的PO2+Fe)使总鲜根重和营养重分别增加(46.17、136.8)g,干根重和植物重分别增加到(4.87、10.07)g。温室试验结果表明,与对照组相比,Fo6+PO2+Fe处理的感染发生率和损伤程度分别降低了10%和5.83%,由于植物对向根中添加螯合铁的反应,铁百分比显著增加,处理之间存在显著差异。根据结果,可以推荐使用荧光假单胞菌和螯合铁来控制由尖孢镰刀菌引起的辣椒枯萎病。
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EFFICACY OF PSEUDOMONAS FLUORESCENS AND IRON CHELATED FE-EDDHA AGAINST FUSARIUM OXYSPORUM F. SP. THE CAUSAL AGENT OF ROOT ROT AND WILT DISEASE ON PEPPER
An experiment was conducted to evaluate the biological control activity of Pseudomonas fluorescens PO2 and chelated iron Fe-EDDHA (Fe) at a concentration of 0.5% and the interaction between them for inhibiting Fusarium oxysporum Fo6 on pepper. In vitro, PO2 significantly inhibited the growth of Fo6 with an inhibition rate of 83.33% compared with control, and chelated iron caused a significant decrease for Fo6 with an inhibition rate 66.67% compared with control, while was not affecting the growth of PO2. The results of the pot experiment showed that the treatment (Fo6+PO2+Fe) showed a highest significant difference in reducing the disease incidence and disease severity which amounted to 6.67% compared with control (Pathogen only) (100, 85)% respectively. Also, the treatment (PO2+Fe without the pathogen) was increased the total fresh root and vegetative weight (46.17, 136.8) g respectively and was increase in the dry root and vegetative weight as reached (4.87, 10.07) g respectively compared with control (not inoculated plants) which amounted (12.1, 75.67, 1.83, 5.33) g respectively. In greenhouse experiment the results showed the excellence of the treatment (Fo6+PO2+Fe) in reducing the incidence of infection, which amounted to 10% and the severity of injury amounted to 5.83% compared with the control which recorder to (100, 74)% respectively, as well showed a significant increase in the iron percentage due to response of plant for adding chelated iron into roots with significant differences between treatments. Depending on the results, the use of P. fluorescens with chelated iron can be recommended to control pepper wilt disease caused by F. oxysporum.
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