Tang Y, Wu H, Ye J, Zhang H
State Key Laboratory of Bio-reactor and Engineering, ECUST, Shanghai 200237, China.
Wei Sheng Wu Xue Bao. 2001 Oct;41(5):559-66.
To study frequency and mechanism of homologous recombination in Streptomyces, an E. coli plasmid which cannot replicate in Streptomyces was transformed into Streptomyces lincolnensis B48. After homologous recombination between delta lincomycin biosynthetic genes inactivated by thiostrepton resistant gene (tsr) carried on pYYE04al and homologous sequences on the chromosome, S. lincolnensis YY1 and S. lincolnensis, YY2 were obtained on SMA with low thiostrepton concentration. Hybridization of chromosomal DNA samples of S. lincolnensis YY1, S. lincolnensis YY2, standard S. lincolnensis and S. lincolnensis YYc digested with SmaI with the probe of tsr gene gave signal corresponding to a fragment of 1.5 kb in the former two; Nevertheless, hybridization of chromosomal DNA digested with Hind III and Sma I using the probe of delta lacZ' gene resulted in positive fragment of 4.4 kb only in S. lincolnensis YY2. Southern hybridizations indicate that S. lincolnensis YY1 is the result of homologous exchange while S. lincolnensis YY2 comes from bomologous recombination. To prove the existence of E. coli replicon and ampicillin resistant gene on the chromosome of S. lincolnensis YY2, its DNA digested with SphI was ligated and then transformed into E. coli JM83 competent cell. Two transformants named pSLE1 grew on the plate containing ampicillin. It's confirmed that pSLE1 is a part of pYYE04a1 from its digestion with different enzymes.
为了研究链霉菌中同源重组的频率和机制,将一种不能在链霉菌中复制的大肠杆菌质粒转化到林肯链霉菌B48中。携带硫链丝菌素抗性基因(tsr)的pYYE04al上的δ林可霉素生物合成基因与染色体上的同源序列发生同源重组后,在低硫链丝菌素浓度的SMA上获得了林肯链霉菌YY1和林肯链霉菌YY2。用tsr基因探针与经SmaI消化的林肯链霉菌YY1、林肯链霉菌YY2、标准林肯链霉菌和林肯链霉菌YYc的染色体DNA样本杂交,在前两者中产生了对应于1.5 kb片段的信号;然而,用δlacZ'基因探针与经Hind III和Sma I消化的染色体DNA杂交,仅在林肯链霉菌YY2中产生了4.4 kb的阳性片段。Southern杂交表明,林肯链霉菌YY1是同源交换的结果,而林肯链霉菌YY2来自同源重组。为了证明林肯链霉菌YY2染色体上存在大肠杆菌复制子和氨苄青霉素抗性基因,将其经SphI消化的DNA进行连接,然后转化到大肠杆菌JM83感受态细胞中。两个名为pSLE1的转化子在含有氨苄青霉素的平板上生长。通过用不同酶对其消化,证实pSLE1是pYYE04a1的一部分。