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Genetic analysis of erythromycin production in Streptomyces erythreus.

机译:红链霉菌中红霉素生产的遗传分析。

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摘要

Streptomyces erythreus produces the 14-membered macrolide antibiotic erythromycin A. The properties of erythromycin A nonproducing mutants and their genetic linkage to chromosomal markers were used to establish the rudiments of genetic organization of antibiotic production. Thirty-three Ery- mutants, produced by mutagenesis of S. erythreus NRRL 2338 and affecting the formation of the macrolactone and deoxysugar intermediates of erythromycin A biosynthesis, were classified into four phenotypically different groups based on their cosynthesis behavior, the type of biosynthetic intermediate accumulated, and their ability to biotransform known biochemical intermediates of erythromycin A. Demonstration of the occurrence of natural genetic recombination during conjugal mating in S. erythreus enabled comparison of the genetic linkage relationships of three different ery mutations with seven other markers on a simple chromosome map. This established a chromosomal location for the ery mutations, which appear to be located in at least two positions within one interval of the map.
机译:红霉素链霉菌产生14元大环内酯类抗生素红霉素A。非生产性红霉素A的特性及其与染色体标记的遗传联系被用于建立抗生素生产遗传组织的基础。根据红球菌NRRL 2338的诱变作用产生并影响红霉素A生物合成的大内酯和脱氧糖中间体的形成的33个Ery突变体,根据其协同合成行为,累积的生物合成中间体的类型,分为四个表型不同的组。 ,以及它们对红霉素A已知生化中间体进行生物转化的能力。通过在红斑狼疮(S. erythreus)进行夫妻交配过程中自然遗传重组的发生的证明,可以在简单的染色体图谱上比较三种不同的ery突变与其他七个标记的遗传连锁关系。这确定了ery突变的染色体位置,该ery突变似乎位于图的一个间隔内的至少两个位置。

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