首页> 美国卫生研究院文献>Journal of Bacteriology >Degradation of phenol and m-toluate in Pseudomonas sp. strain EST1001 and its Pseudomonas putida transconjugants is determined by a multiplasmid system.
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Degradation of phenol and m-toluate in Pseudomonas sp. strain EST1001 and its Pseudomonas putida transconjugants is determined by a multiplasmid system.

机译:假单胞菌中苯酚和间甲苯酸酯的降解EST1001菌株及其恶臭假单胞菌转导结合物由多质粒系统确定。

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摘要

The utilization of phenol, m-toluate, and salicylate (Phe+, mTol+, and Sal+ characters, respectively) in Pseudomonas sp. strain EST1001 is determined by the coordinated expression of genes placed in different plasmids, i.e., by a multiplasmid system. The natural multiplasmid strain EST1001 is phenotypically unstable. In its Phe-, mTol-, and Sal- segregants, the plasmid DNA underwent structural rearrangements without a marked loss of plasmid DNA, and the majority of segregants gave revertants. The genes specifying the degradation of phenol and m-toluate were transferable to P. putida PaW340, and in this strain a new multiplasmid system with definite structural changes was formed. The 17-kilobase transposable element, a part of the TOL plasmid pWWO present in the chromosome of PaW340, was inserted into the plasmid DNA in transconjugants. In addition, transconjugant EST1020 shared pWWO-like structures. Enzyme assays demonstrated that ortho-fission reactions were used by bacteria that grew on phenol, whereas m-toluate was catabolized by a meta-fission reaction. Salicylate was a functional inducer of the enzymes of both pathways. The expression of silent metabolic pathways of phenol or m-toluate degradation has been observed in EST1001 Phe- mTol+ and Phe+ mTol- transconjugants. The switchover of phenol degradation from the ortho- to the meta-pathway in EST1033 also showed the flexibility of genetic material in EST1001 transconjugants.
机译:假单胞菌属中苯酚,间甲苯酸酯和水杨酸酯(分别为Phe +,mTol +和Sal +字符)的利用。 EST1001菌株是通过置于不同质粒中的基因的协调表达,即通过多质粒系统来确定的。天然多质粒菌株EST1001在表型上不稳定。在其Phe-,mTol-和Sal-segregants中,质粒DNA进行了结构重排,而质粒DNA却没有明显丢失,并且大多数segregant提供了回复子。苯酚和间甲苯酸酯降解的基因可转移到恶臭假单胞菌PaW340中,在该菌株中形成具有确定结构变化的新多质粒系统。将17碱基碱基的转座因子(存在于PaW340染色体中的TOL质粒pWWO的一部分)插入转接合子中的质粒DNA中。另外,转导结合体EST1020共享pWWO样结构。酶分析表明,在苯酚上生长的细菌使用了邻位裂变反应,而间裂变反应则分解了间甲苯甲酸。水杨酸酯是两种途径的酶的功能诱导剂。在EST1001 Phe- mTol +和Phe + mTol-转偶联剂中已观察到苯酚或间甲苯酸酯降解的沉默代谢途径的表达。苯酚降解从EST1033中的邻位途径转变为间位途径,也表明EST1001转结合子中遗传物质的灵活性。

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