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首页> 外文期刊>Microbiological Research >Antibiotic-producing Pseudomonas fluorescens mediates rhizome rot disease resistance and promotes plant growth in turmeric plants
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Antibiotic-producing Pseudomonas fluorescens mediates rhizome rot disease resistance and promotes plant growth in turmeric plants

机译:荧光抗生素的假霉菌荧光介质根茎腐败抗病抗性,促进姜黄植物的植物生长

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Rhizome rot of turmeric caused by Pythium aphanidermatum is a major threat to turmeric-cultivating areas of India. This study intends to evaluate the performance of fluorescent pseudomonads against Rhizome rot disease and understand the resistance mechanism in Turmeric plants. Fluorescent pseudomonads were screened against Pythium aphanidermatum using dual culture. Selected strains were evaluated for the performance of growth promoting attributes and the presence of antibiotic genes through PCR analysis. Strain FP7 recorded the maximum percent inhibition of P. aphanidermatum under in vitro conditions. Strains FP7 and TPF54 both increased plant growth in turmeric plants in vitro. Strain FP7 alone contained all the evaluated antibiotic biosynthetic genes. Talc and liquid-based formulations were prepared with effective strain and tested for its biocontrol activities under both glasshouse and field conditions. Enzymatic activities of the induced defense enzymes such as PO, PPO, PAL, CAT and SOD were estimated and subjected to spectrophotometric analysis. A combination of rhizome dip and soil drench of FP7 liquid formulation treatment remarkably recorded the minimum disease incidence, higher defense enzymes, maximum plant growth and yield under glasshouse and field conditions. Application of strain FP7 increased the defense molecules, plant growth and yield in turmeric plants thereby reducing the incidence of rhizome rot disease. Moreover, this study has a potential to be adopted for sustainable and eco-friendly turmeric production.
机译:姜黄腐姜黄引起的姜黄腐烂是对印度姜黄培养地区的重大威胁。本研究打算评估荧光假单胞菌对根茎腐疾病的表现,理解姜黄植物中的抗性机制。使用双重培养,筛选荧光假单胞菌对茄生素的筛选。通过PCR分析评估了所选菌株的生长促进属性和抗生素基因的存在。菌株FP7在体外条件下记录了P. aphanidermatum的最大抑制。菌株FP7和TPF54在体外姜黄植物的植物生长增加。单独菌株FP7含有所有评估的抗生素生物合成基因。制备滑石和基于液体的制剂,具有有效的菌株,并在玻璃室和现场条件下进行其生物控制活动。估计并对分光光度分析进行诱导的防御酶如PO,PPO,PAL,CAT和SOD等诱导的防御酶的酶活性。 FP7液体配方处理的根茎浸渍和土壤浸露的组合显着记录了最低疾病发病率,更高的防御酶,最高植物生长和玻璃场条件下的产量。菌株FP7的应用增加了姜黄植物中的防御分子,植物生长和产量,从而降低了根茎腐病的发病率。此外,该研究具有可持续和环保姜黄生产的潜力。

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