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首页> 外文期刊>Archives of Phytopathology and Plant Protection >Antifungal activity of crude extract produced by Bacillus sp. associated with entomopathogenic nematode from media formulated by six nitrogen sources with fructose against Penicillium expansum.
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Antifungal activity of crude extract produced by Bacillus sp. associated with entomopathogenic nematode from media formulated by six nitrogen sources with fructose against Penicillium expansum.

机译:芽孢杆菌产生的粗提取物的抑菌活性。与六种氮源果糖配制的培养基中的致病性线虫相关,可预防扩张性青霉。

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摘要

A specific symbiotic Bacillus species isolated from a rhabditid entomopathogenic nematode, Rhabditis (Oscheius) sp. was found to produce a number of bioactive compounds. The present study was conducted to determine the effect of six different nitrogen sources in combination with fructose on the production of antifungal crude extract by Bacillus sp. against Penicillium expansum. The yield of crude extract and antifungal activity against the test fungi differed significantly when the nitrogen sources in the fermentation media were changed. The highest yield was recorded for beef extract plus fructose (921 mg/L). The antifungal activity was higher in yeast extract plus fructose [P. expansum (46.5+or-2.12 mm)], followed by beef extract. High performance liquid chromatography analysis of the crude antimicrobial substances revealed different peaks with different retention times indicating that they produced different compounds. When a carbon source was not included in the fermentation medium, the antimicrobial production was substantially reduced almost eight times. Carbon source in the fermentation medium plays a vital role in the production of antimicrobial substances. Yeast extract and fructose as nitrogen and carbon sources in the fermentation medium produced maximum antimicrobial activity.
机译:从大肠昆虫病原线虫,Rhabditis(Oscheius)sp。中分离出的特定共生芽孢杆菌种。被发现会产生许多生物活性化合物。进行本研究以确定六种不同氮源与果糖结合对芽孢杆菌属细菌生产抗真菌粗提物的影响。对抗青霉菌。当改变发酵培养基中的氮源时,粗提物的产量和对测试真菌的抗真菌活性差异很大。牛肉提取物加果糖的产量最高(921 mg / L)。酵母提取物加果糖中的抗真菌活性较高[P. (46.5+或-2.12毫米)],然后是牛肉提取物。粗抗菌物质的高效液相色谱分析显示不同的峰,具有不同的保留时间,表明它们产生了不同的化合物。当发酵培养基中不包含碳源时,抗菌素的生成量几乎减少了八倍。发酵培养基中的碳源在生产抗菌物质中起着至关重要的作用。酵母提取物和果糖作为发酵培养基中的氮和碳源,产生了最大的抗菌活性。

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