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金黄色葡萄球菌染色体上导致营养缺陷型的Tn551插入位点分布。

Distribution of Tn551 insertion sites responsible for auxotrophy on the Staphylococcus aureus chromosome.

作者信息

Pattee P A

出版信息

J Bacteriol. 1981 Jan;145(1):479-88. doi: 10.1128/jb.145.1.479-488.1981.

Abstract

A method was devised to efficiently select isolates of Staphylococcus aureus 8325 in which Tn551, a transposon originating on the pI258 plasmid responsible for erythromycin resistance (Emr), had translocated to the host chromosome. This method consisted of selecting for Emr at 43 degrees C with a strain in which the pI258 plasmid was unable to replicate at 43 degrees C because of a temperature-sensitive plasmid mutation. By selecting isolates that were Emr at 43 degrees C and auxotrophic for nutrients not required by the parent strain. Tn551-induced auxotrophic mutants were readily isolated. The incidence of auxotrophic classes was not random; 80% of the isolates in one experiment were Trp-, whereas only a single example of each of some of the other classes was isolated. Among the Trp- mutants, the distribution of trp genes affected and the frequency of precise excision of Tn551 from individual sites varied. When analyzed by transformation, the Tn551-induced ala, his, ilv, lys, rib, thrA, thrB, and trp mutations were shown to occupy sites previously defined by nitrosoguanidine-induced mutations. Tn551-induced mutagenesis provided three previously unrecognized classes of auxotrophs (tyr, met, and thrC), and the Tn551 integration sites resulting in these mutations have been identified. In addition, a chromosomal region (uraB) was identified by Tn551 mutagenesis that is distinct from uraA (previously defined by chemical mutagenesis). Some Tn551-induced mutations (most notably pur) could not be linked to the known linkage groups of the chromosome by transformation. With the exception of two pur mutations, all of the Tn551-induced auxotrophic mutational sites cotransformed at unity with Tn551 and, in cases in which they were selected, prototrophic transformants were always Ems. Thus, the Tn551 and auxotrophic sites are identical.

摘要

设计了一种方法来高效筛选金黄色葡萄球菌8325的分离株,其中源自负责红霉素抗性(Emr)的pI258质粒的转座子Tn551已转移至宿主染色体。该方法包括在43℃下选择对Emr有抗性的菌株,该菌株中pI258质粒由于温度敏感型质粒突变而无法在43℃复制。通过选择在43℃下对Emr有抗性且对亲本菌株不需要的营养物质为营养缺陷型的分离株,很容易分离出Tn551诱导的营养缺陷型突变体。营养缺陷型类别的发生率并非随机;在一次实验中,80%的分离株为色氨酸缺陷型(Trp-),而其他一些类别的分离株每个仅分离到一个实例。在色氨酸缺陷型突变体中,受影响的trp基因分布以及Tn551从各个位点精确切除的频率各不相同。通过转化分析,Tn551诱导的丙氨酸、组氨酸、异亮氨酸、赖氨酸、核糖体、苏氨酸A、苏氨酸B和色氨酸突变被证明占据了先前由亚硝基胍诱导突变所定义的位点。Tn551诱导的诱变产生了三种先前未被识别的营养缺陷型类别(酪氨酸、甲硫氨酸和苏氨酸C),并且已确定导致这些突变的Tn551整合位点。此外,通过Tn551诱变鉴定出一个与uraA(先前由化学诱变定义)不同的染色体区域(uraB)。一些Tn551诱导的突变(最显著的是嘌呤突变)无法通过转化与染色体已知的连锁群相连。除了两个嘌呤突变外,所有Tn551诱导的营养缺陷型突变位点都与Tn_{551}以1的比例共转化,并且在选择的情况下,原养型转化体总是Emr。因此,Tn551和营养缺陷型位点是相同的。

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