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The Mutation Breeding and Mutagenic Effect of Air Plasma on Penicillium Chrysogenum

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【作者】 桂芳王辉王鹏刘会蔡晓春胡以华袁成凌郑之明

【Author】 GUI Fang 1 , WANG Hui 1 , WANG Peng 1 , LIU Hui 1 , CAI Xiaochun 2 , HU Yihua 2 , YUAN Chengling 1 , ZHENG Zhiming 1 1 Key Laboratory of Ion Beam Bioengineering, Chinese Academy of Sciences, Hefei 230031, China 2 Electronic Engineering Institute, Hefei 230037, China

【机构】 Key Laboratory of Ion Beam Bioengineering,Chinese Academy of SciencesElectronic Engineering Institute

【摘要】 Low temperature air plasma was used as the mutation tool for penicillin-producing strain Penicillium chrysogenum. The discharge conditions were RF power of 360 W, temperature of 40℃ in a sealed chamber, and pressure of 10 Pa to 30 Pa. The result showed that the kinetics of the survival rate followed a typical saddle-shaped curve. Based on a statistic analysis, at the treating duration of 10 min, the positive mutation rate was as high as 37.5% while the negative mutation rate was low. The colonial morphology changed obviously when the plasma treating duration reached or exceeded 45 min. After both primary and secondary screening, a mutant designated as aPc051310 with high productivity of penicillin was obtained, and a strong mutagenic effect on P. chrysogenum was observed in the process. It was proved that after five generations, the mutant aPc051310 still exhibits a high productivity. All the results prove that the plasma mutation method could be developed as a convenient and effective tool to breed high-yield strains in the fermentation industry, while expanding the plasm application at the same time.

【Abstract】 Low temperature air plasma was used as the mutation tool for penicillin-producing strain Penicillium chrysogenum. The discharge conditions were RF power of 360 W, temperature of 40℃ in a sealed chamber, and pressure of 10 Pa to 30 Pa. The result showed that the kinetics of the survival rate followed a typical saddle-shaped curve. Based on a statistic analysis, at the treating duration of 10 min, the positive mutation rate was as high as 37.5% while the negative mutation rate was low. The colonial morphology changed obviously when the plasma treating duration reached or exceeded 45 min. After both primary and secondary screening, a mutant designated as aPc051310 with high productivity of penicillin was obtained, and a strong mutagenic effect on P. chrysogenum was observed in the process. It was proved that after five generations, the mutant aPc051310 still exhibits a high productivity. All the results prove that the plasma mutation method could be developed as a convenient and effective tool to breed high-yield strains in the fermentation industry, while expanding the plasm application at the same time.

【基金】 supported by the National Hi’Tech (863) Project of China (No. 2009AA02Z305)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学与技术(英文版) , 编辑部邮箱 ,2012年04期
  • 【分类号】Q93;O539
  • 【被引频次】4
  • 【下载频次】87
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