Polissi A, Bestetti G, Bertoni G, Galli E, Dehò G
Dipartimento di Genetica e di Biologia dei Microrganismi, Università degli Studi di Milano, Italy.
J Bacteriol. 1990 Nov;172(11):6355-62. doi: 10.1128/jb.172.11.6355-6362.1990.
The catabolic pathway for the degradation of aromatic hydrocarbons encoded by Pseudomonas putida TMB differs from the TOL plasmid-encoded pathway as far as regulation of the upper pathway is concerned. We found, by analyzing Tn5-induced mutants and by Southern blot hybridization with appropriate probes derived from the TOL plasmid pWW0, that the catabolic genes of strain TMB were located on the bacterial chromosome and not on the 84-kb plasmid harbored by this strain. The catabolic genes of TMB and pWW0 had sequence homology, as shown by Southern blot hybridization, but differed significantly in their restriction patterns. The analysis of the mutants suggests that a regulatory mechanism similar to that present in pWW0 coexists in TMB with a second mode of regulation which is epistatic on the former and that the chromosomal region carrying the catabolic genes is prone to rearrangements and deletions.
就上半途径的调控而言,恶臭假单胞菌TMB编码的芳烃降解分解代谢途径与TOL质粒编码的途径不同。通过分析Tn5诱导的突变体并使用源自TOL质粒pWW0的合适探针进行Southern印迹杂交,我们发现菌株TMB的分解代谢基因位于细菌染色体上,而非该菌株所携带的84 kb质粒上。Southern印迹杂交表明,TMB和pWW0的分解代谢基因具有序列同源性,但它们的限制性图谱存在显著差异。对突变体的分析表明,TMB中存在一种与pWW0中类似的调控机制,同时还存在另一种对前者具有上位性的调控模式,并且携带分解代谢基因的染色体区域易于发生重排和缺失。