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The bialaphos biosynthetic genes of Streptomyces viridochromogenes: cloning, heterospecific expression, and comparison with the genes of Streptomyces hygroscopicus

机译:绿链霉菌的双丙氨磷生物合成基因:克隆,异种表达以及与吸水链霉菌基因的比较

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摘要

The bialaphos resistance gene, bar, was used as a selectable marker to isolate the bialaphos production genes (bap) from the Streptomyces viridochromogenes genome. The S. viridochromogenes bar gene was cloned on overlapping restriction fragments using pIJ680 and pIJ702 in the bialaphos-sensitive host, S. lividans. Although the restriction endonuclease cleavage map of these fragments was not similar to the bap cluster of S. hygroscopicus, the presence and location of bar and four other bap genes as well as a gene required for the transcriptional activation of the cluster (brpA) was demonstrated by heterologous cloning experiments using a series of previously characterized bialaphos-nonproducing S. hygroscopicus mutants. Since recombination-deficient mutants of streptomycetes have not been isolated, restored function provided by cloned homologous DNA results from both recombination (marker rescue) and complementation in trans. In contrast to our previously reported homologous cloning experiments where we were able to define the position of mutant alleles by recombination, in these heterologous cloning experiments we observed little if any recombination between plasmid-cloned genes and the chromosome. As a result, this approach allowed us to define the location and orientation of functional genes using a genetic complementation test. The organization of the clustered S. viridochromogenes bap genes was indistinguishable from the corresponding S. hygroscopicus mutant alleles. The fact that the S. viridochromogenes transcriptional regulatory gene, brpA, functioned in S. hygroscopicus implied that some transcriptional regulatory signals may also be interchangeable. In these two Streptomyces species, which have considerable nucleotide sequence divergence, the complex biochemical and genetic organization of the bialaphos biosynthetic pathway is conserved.
机译:双丙氨膦抗性基因bar被用作选择标记,以从链霉菌致色链霉菌基因组中分离出双丙氨膦生产基因(bap)。在双丙氨酸磷敏感的宿主S. lividans中,使用pIJ680和pIJ702在重叠的限制性片段上克隆了S. viridochromogenes bar基因。尽管这些片段的限制性核酸内切酶切割图谱与吸水链球菌的bap簇不相似,但证实了bar和其他四个bap基因以及该簇转录激活所需的基因(brpA)的存在和定位。通过使用一系列先前表征的不产生双丙氨磷的吸湿链霉菌突变体的异源克隆实验。由于尚未分离出链霉菌的重组缺陷型突变体,因此克隆的同源DNA提供的恢复功能来自重组(标志物拯救)和反式互补。与我们以前报道的同源克隆实验(通过重组我们能够确定突变等位基因的位置)相反,在这些异源克隆实验中,我们观察到质粒克隆的基因与染色体之间几乎没有重组。结果,这种方法使我们能够使用遗传互补测试来定义功能基因的位置和方向。簇生的嗜铬链球菌Bap基因的组织与相应的吸水链球菌突变体等位基因没有区别。 S. viridochromogenes转录调控基因brpA在吸水链霉菌中起作用的事实表明,某些转录调控信号也可能是可互换的。在这两个链霉菌具有很大的核苷酸序列差异的物种中,双丙氨磷生物合成途径的复杂生化和遗传组织得以保留。

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