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Transfer of conjugative plasmids and mobilization of a nonconjugative plasmid between Streptomyces strains on agar and in soil.

机译:琼脂和土壤中链霉菌菌株之间结合质粒的转移和非结合质粒的动员。

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The conjugative plasmid pIJ101 and its conjugative nondeletion derivatives pIJ303 and pIJ211 were tested for their transferability between strains of Streptomyces on laboratory media and in the soil environment. Their roles in the mobilization of the cloning vector plasmid pIJ702, a nonconjugative deletion derivative of pIJ101, were also examined. Biparental and triparental crosses were performed on agar slants and in sterile soil between the plasmid donor Streptomyces lividans and several recipient Streptomyces strains previously isolated from soil. Conjugative plasmids were transferred to seven recipients in slant crosses and to three recipients in soil. Plasmids isolated from recipients showed restriction fragment patterns identical to that of the original plasmid in S. lividans. Plasmid pIJ303 was transferred less frequently in soil than on slants, and the frequency of transfer was higher at 30 degrees C than at the other temperatures examined. Transconjugant Streptomyces strains differed in their ability to maintain pIJ303. The nonconjugative plasmid pIJ702 was mobilized on agar slants into S. coelicolor 2708, which already contains a self-transmissible plasmid. Plasmid pIJ702 was also mobilized into S. flavovirens, Streptomyces sp. strain 87A, and S. parvulus on slants and in sterile soil after triparental crosses with two donors, one containing pIJ702 and the other containing either pIJ101 or pIJ211. The presence of a conjugative plasmid donor was required for the transfer of pIJ702 to S. parvulus 1234, S. flavovirens 28, and Streptomyces sp. strain 87A. Plasmid pIJ702 was always transferred in its normal, autonomous form. Chromosomal recombination also occurred in transconjugants after the transfer of pIJ702. This is the first report of gene transfer between Streptomyces strains in soil.
机译:测试了缀合质粒pIJ101及其缀合的非缺失衍生物pIJ303和pIJ211在实验室培养基和土壤环境中链霉菌菌株之间的转移能力。还检查了它们在动员克隆载体质粒pIJ702(pIJ101的非结合缺失衍生物)中的作用。在琼脂斜面上和无菌土壤中的双亲和三亲杂交在质粒供体淡紫色链霉菌和先前从土壤中分离出来的几个受体链霉菌之间进行。将结合质粒转移至倾斜杂交的7个受体和土壤中的3个受体。从受体分离的质粒显示出的限制性片段模式与葡萄链霉菌中原始质粒的限制性片段模式相同。质粒pIJ303在土壤中的转移频率比在斜面上要低,并且在30摄氏度时的转移频率要比在其他温度下更高。转偶联链霉菌菌株维持pIJ303的能力不同。非共轭质粒pIJ702在琼脂斜面上动员到天蓝色链霉菌2708中,该质粒已经含有自传递质粒。质粒pIJ702也被动员到黄病毒链霉菌链霉菌中。三亲杂交后,在倾斜和无菌土壤中的两株供体分别感染了87A和S. parvulus,一个供体包含pIJ702,另一个供体pIJ101或pIJ211。将pIJ702转移至细小链霉菌1234,黄病毒链霉菌28和链霉菌种需要结合质粒供体的存在。菌株87A。质粒pIJ702始终以其正常的自主形式转移。 pIJ702转移后,转导结合体中也发生了染色体重组。这是土壤中链霉菌菌株之间基因转移的第一个报道。

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