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丁烯基多杀菌素高产菌株的巴龙霉素抗性筛选

邬洋, 徐妙, 罗林根, 杨燕, 夏立秋   

  1. 湖南师范大学生命科学学院/微生物分子生物学国家重点实验室培育基地, 长沙 410081
  • 收稿日期:2014-04-10 修回日期:1900-01-01 出版日期:2015-02-08 发布日期:2015-02-08
  • 通讯作者: 夏立秋,硕士,教授,E-mail:xialq@hunnu.edu.cn

Screening of Butenyl-spinosyn High-yield Strains by Paromomycin Resistance

WU Yang, XU Miao, LUO Lingen, YANG Yan, XIA Liqiu   

  1. State Key Laboratory Breeding Base of Microbial Molecular Biology/College of Life Science, Hunan Normal University, Changsha 410081, China
  • Received:2014-04-10 Revised:1900-01-01 Online:2015-02-08 Published:2015-02-08

摘要: 为了提高须糖多孢菌Saccharopolyspora pogona的丁烯基多杀菌素产量水平,利用核糖体工程技术,对其进行巴龙霉素抗性筛选,在10×MIC巴龙霉素浓度下,分离得到巴龙霉素自发抗性突变株54株。通过对原始菌株和突变株代谢产物变化的初步研究发现,相比于原始菌株,丁烯基多杀菌素组分在抗性突变株中的合成能力有明显差异,有6株抗性突变株的产量明显高于原始菌株,约20%左右的突变株产量提高,约45%左右的突变株产量降低。其中突变株P-7的丁烯基多杀菌素产量提高幅度最大,相比原始菌株提高2.2倍。对巴龙霉素抗性突变株P-7进行DNA序列分析,在编码核糖体S12蛋白的rpsL基因保守区域中发现点突变,第314位的C突变为A,由脯氨酸突变为谷氨酰胺;第320位的C突变为T,由丙氨酸突变为缬氨酸。

Abstract: In order to improve the yield of butenyl-spinosyns produced by Saccharopolyspora pogona, we used ribosome engineering technology to screen the paromomycin resistant mutants. In 10×MIC paromomycin concentration, we isolated 54 spontaneous paromomycin resistant mutants. By a preliminary study on metabolites, we found that the mutants had significant differences in synthesis ability of butenyl-spinosyn. There were 6 mutants in which the yields were higher than the wild strain, about 20% were positive and 45% were negative mutants. The mutant P-7 has the largest increase rate of butenyl-spinosyns yield, which improved 2.2-fold compared with the wild strain. DNA sequence analysis showed that two point mutations occurred in the conserved regions of rpsL gene encoding ribosomal protein S12, the 314th by C mutation for A, the corresponding proline mutated to glutamine. The 320th by C mutation for T, the corresponding alanine mutated to valine.

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