Vournakis J N, Elander R P
Science. 1983 Feb 11;219(4585):703-9. doi: 10.1126/science.6572018.
The application of directed selection techniques and genetic engineering methods for manipulation of antibiotic-producing microorganisms is generating a new era in industrial microbiology. Modern methods, based on advances in the knowledge of the biosynthetic pathways and regulatory mechanisms involved in the induction and repression of genes involved in antibiotic synthesis, provide a means of increasing antibiotic activity. Hence, recombinant DNA and protoplast fusion methods are used to alter the genetics of antibiotic producers in a semirandom fashion for the development of novel hybrid antibiotics. Directed mutation and selection, protoplast fusion, and both semirandom and specific recombinant DNA methods are examples of alternative procedures for manipulating the biosynthetic pathways of microorganisms for strain improvement and for new hybrid antibiotic synthesis.
将定向筛选技术和基因工程方法应用于抗生素产生菌的操作,正在开创工业微生物学的新纪元。基于抗生素合成相关基因诱导和抑制所涉及的生物合成途径及调控机制知识的进步,现代方法提供了提高抗生素活性的手段。因此,重组DNA和原生质体融合方法被用于以半随机方式改变抗生素产生菌的遗传学,以开发新型杂合抗生素。定向突变与筛选、原生质体融合以及半随机和特异性重组DNA方法,都是用于操纵微生物生物合成途径以改良菌株和合成新型杂合抗生素的替代方法实例。