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假产碱假单胞菌C70有效降解苯酚和水杨酸盐的策略。

Strategy of Pseudomonas pseudoalcaligenes C70 for effective degradation of phenol and salicylate.

作者信息

Jõesaar Merike, Viggor Signe, Heinaru Eeva, Naanuri Eve, Mehike Maris, Leito Ivo, Heinaru Ain

机构信息

Institute of Molecular and Cell Biology, Faculty of Science and Technology, University of Tartu, Tartu, Estonia.

Institute of Chemistry, Faculty of Science and Technology, University of Tartu, Tartu, Estonia.

出版信息

PLoS One. 2017 Mar 3;12(3):e0173180. doi: 10.1371/journal.pone.0173180. eCollection 2017.

Abstract

Phenol- and naphthalene-degrading indigenous Pseudomonas pseudoalcaligenes strain C70 has great potential for the bioremediation of polluted areas. It harbours two chromosomally located catechol meta pathways, one of which is structurally and phylogenetically very similar to the Pseudomonas sp. CF600 dmp operon and the other to the P. stutzeri AN10 nah lower operon. The key enzymes of the catechol meta pathway, catechol 2,3-dioxygenase (C23O) from strain C70, PheB and NahH, have an amino acid identity of 85%. The metabolic and regulatory phenotypes of the wild-type and the mutant strain C70ΔpheB lacking pheB were evaluated. qRT-PCR data showed that in C70, the expression of pheB- and nahH-encoded C23O was induced by phenol and salicylate, respectively. We demonstrate that strain C70 is more effective in the degradation of phenol and salicylate, especially at higher substrate concentrations, when these compounds are present as a mixture; i.e., when both pathways are expressed. Moreover, NahH is able to substitute for the deleted PheB in phenol degradation when salicylate is also present in the growth medium. The appearance of a yellow intermediate 2-hydroxymuconic semialdehyde was followed by the accumulation of catechol in salicylate-containing growth medium, and lower expression levels and specific activities of the C23O of the sal operon were detected. However, the excretion of the toxic intermediate catechol to the growth medium was avoided when the growth medium was supplemented with phenol, seemingly due to the contribution of the second meta pathway encoded by the phe genes.

摘要

具有苯酚和萘降解能力的本地假产碱假单胞菌菌株C70在污染区域的生物修复方面具有巨大潜力。它含有两条位于染色体上的儿茶酚间位代谢途径,其中一条在结构和系统发育上与假单胞菌属CF600的dmp操纵子非常相似,另一条与施氏假单胞菌AN10的nah下游操纵子相似。儿茶酚间位代谢途径的关键酶,即菌株C70的儿茶酚2,3-双加氧酶(C23O)、PheB和NahH,氨基酸同一性为85%。对野生型和缺乏pheB的突变菌株C70ΔpheB的代谢和调控表型进行了评估。qRT-PCR数据表明,在C70中,pheB和nahH编码的C23O的表达分别由苯酚和水杨酸盐诱导。我们证明,当这些化合物以混合物形式存在时,即当两条途径都表达时,菌株C70在苯酚和水杨酸盐的降解方面更有效,尤其是在较高底物浓度下。此外,当生长培养基中也存在水杨酸盐时,NahH能够替代缺失的PheB参与苯酚降解。在含水杨酸盐的生长培养基中,黄色中间体2-羟基粘康酸半醛出现后,儿茶酚开始积累,并且检测到sal操纵子的C23O的表达水平和比活性较低。然而,当生长培养基中添加苯酚时,可避免有毒中间体儿茶酚排泄到生长培养基中,这似乎是由于phe基因编码的第二条间位代谢途径的作用。

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