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Formulation of a Novel Antagonistic Bacterium Based Biopesticide for Fungal Disease Control Using Microencapsulation Techniques

机译:基于微囊化技术的新型拮抗细菌基生物农药的真菌病害防治

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Bacillus cereus strain C1L, screened from the rhizosphere of Lilium formosanum , prevents severe lily leaf blight. The purpose of this study was to formulate a new biopesticide by microencapsulating the C1L strain to enhance residual stability. In addition, since the viable cell number of Bacillus cereus C1L is an important factor affecting the biological effects of this fungicide, this study also used the response surface methodology and sequential quadratic programming methods to optimize the best formula for maximum viability of Bacillus cereus C1L microencapsulated by spray drying. Optimization results revealed that the strain could maintain 42% viability with 18.3% maltodextrin and 12.5% gum arabic as coating materials and spray drying at an outlet temperature of 73.5 oC. A comparison with chemical pesticides showed that maneb was the most efficient disease inhibitor, followed by B. cereus C1L encapsulated by spray drying. The chemical pesticide probenazole and B. cereus C1L encapsulated by extrusion revealed no significant differences in disease control.
机译:从福建百合的根际筛选的蜡状芽孢杆菌菌株C1L可以防止严重的百合叶枯萎病。这项研究的目的是通过微囊化C1L菌株以增强残留稳定性来配制一种新的生物农药。此外,由于蜡状芽孢杆菌C1L的活细胞数是影响该杀菌剂生物学效应的重要因素,因此本研究还使用了响应面法和顺序二次规划方法来优化微胶囊化蜡状芽孢杆菌C1L的最大活性的最佳配方。通过喷雾干燥。优化结果表明,该菌株可以维持42%的活力,其中18.3%的麦芽糖糊精和12.5%的阿拉伯树胶作为包衣材料,并在73.5 oC的出口温度下喷雾干燥。与化学农药的比较表明,maneb是最有效的疾病抑制剂,其次是通过喷雾干燥封装的蜡状芽孢杆菌C1L。挤压包封的化学杀虫剂probe唑和蜡状芽孢杆菌C1L在疾病控制方面无显着差异。

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