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Autocide AMI rescues development in dsg mutants of Myxococcus xanthus.

机译:杀菌剂AMI可以拯救黄色粘球菌dsg突变体的发育。

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摘要

Low concentrations of autocide AMI rescued aggregation and sporulation in the dsg mutant class of Myxococcus xanthus but were incapable of rescuing asg, bsg, or csg mutants. AMI-induced spores of dsg mutants were resistant to heat and sonication and germinated when plated on nutrient-rich agar. AMI accelerated aggregation and sporulation and increased the final spore number in submerged cultures of a wild-type strain of M. xanthus. Development of M. xanthus was accompanied by release of a fluorescent material (emission maximum, 438 nm) into the supernatant fluid. The release of this material began early and continued throughout development. All Spo- mutant strains tested released significantly reduced levels of this material. These levels were increased in the presence of AMI in all Spo- mutant classes, most dramatically in the dsg mutants.
机译:低浓度的杀菌剂AMI可以拯救xanthus粘菌球菌dsg突变体类别中的聚集和孢子形成,但无法拯救asg,bsg或csg突变体。 AMI诱导的dsg突变体的孢子对热和声波有抵抗力,并在接种到富含营养的琼脂上后发芽。 AMI加速了黄花菜野生型菌株水下培养中的聚集和孢子形成,并增加了最终孢子数。黄褐毛霉的发展伴随着荧光物质(最大发射,438nm)释放到上清液中。该材料的发布开始较早,并在整个开发过程中一直持续。所有测试的Spo突变菌株均释放出显着降低的该物质水平。在所有Spo突变体类别中,存在AMI时,这些水平都会升高,在dsg突变体中最为明显。

著录项

  • 作者

    Rosenbluh, A; Rosenberg, E;

  • 作者单位
  • 年度 1989
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  • 原文格式 PDF
  • 正文语种 en
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