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首页> 外文期刊>Pesticide Biochemistry and Physiology >Antifungal activity of endophytic Bacillus safensis B21 and its potential application as a biopesticide to control rice blast
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Antifungal activity of endophytic Bacillus safensis B21 and its potential application as a biopesticide to control rice blast

机译:内生芽孢杆菌Safensis B21的抗真菌活性及其潜在应用作为对稻瘟病的生物农药

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Endophytic bacteria are potential biocontrol agents for the control of fungal diseases. Here, an endophyte strain, B21, was isolated from Osmanthus fragrans Lour. fruits and identified as Bacillus safensis by analysis of its 16S rDNA gene sequence and its biochemical and physiological characteristics. The culture filtrate showed antifungal activity against Magnaporthe oryzae, which causes rice blast disease, and the IC50 of the methanol extract was 15.56 mu g/mL, which was significantly lower than that of carbendazim (25.16 mu g/mL). The antifungal activity of the methanol extract was stable at a wide range of pH values (1-9) and temperatures (40-100 degrees C). Two antifungal compounds were isolated by organic extraction, silica gel column chromatography and high-performance liquid chromatography (HPLC). Based on electrospray ionization mass spectrometry (ESI-MS) and nuclear magnetic resonance spectrometry (NMR) analyses, the structures of the antifungal compounds were identified as iturin A2 and iturin A6. Additionally, the hyphae treated with iturin (iturin A2 or iturin A6) could be stained with the fluorescent dye propidium iodide (PI), indicating that these two compounds inhibited the growth of hyphae by changing the hyphal membrane permeability. In field experiments, spray treatment with fermentation broth resulted in a lower disease index than treatment with carbendazim, as did the culture filtrate. The results suggest that strain B21 and its bioactive compounds have the potential to be developed into a biopesticide for the biocontrol of rice blast.
机译:内生细菌是用于控制真菌疾病的潜在生物控制剂。这里,从桂花植物溶质中分离出一个内体菌株B21。通过分析其16S rDNA基因序列及其生化和生理特性,果实并鉴定为杆菌Safensis。培养滤液显示抗钙质植物的抗真菌活性,这导致水稻爆炸疾病,甲醇提取物的IC50为15.56μg/ ml,其显着低于碳氮群(25.16μg/ ml)。甲醇提取物的抗真菌活性在宽范围的pH值(1-9)和温度范围内稳定(40-100℃)。通过有机萃取,硅胶柱色谱和高效液相色谱(HPLC)分离两种抗真菌化合物。基于电喷雾电离质谱(ESI-MS)和核磁共振光谱法(NMR)分析,抗真菌化合物的结构被鉴定为Iturin A2和Iturin A6。另外,用荧光染料碘化碳化铅(PI)染色用Iturin(Iturin A2或Iturin A6)治疗的菌丝,表明这两种化合物通过改变亚酚膜渗透性来抑制菌丝的生长。在现场实验中,用发酵液喷射治疗导致疾病指数低于碳纳西姆的治疗,培养滤液如培养物。结果表明,菌株B21及其生物活性化合物具有潜力将稻瘟病生物控制的生物农药。

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