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Simultaneous Degradation of Atrazine and Phenol by Pseudomonas sp. Strain ADP: Effects of Toxicity and Adaptation

机译:假单胞菌同时降解阿特拉津和苯酚应变ADP:毒性和适应性的影响

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摘要

The strain Pseudomonas sp. strain ADP is able to degrade atrazine as a sole nitrogen source and therefore needs a single source for both carbon and energy for growth. In addition to the typical C source for Pseudomonas, Na2-succinate, the strain can also grow with phenol as a carbon source. Phenol is oxidized to catechol by a multicomponent phenol hydroxylase. Catechol is degraded via the ortho pathway using catechol 1,2-dioxygenase. It was possible to stimulate the strain in order to degrade very high concentrations of phenol (1,000 mg/liter) and atrazine (150 mg/liter) simultaneously. With cyanuric acid, the major intermediate of atrazine degradation, as an N source, both the growth rate and the phenol degradation rate were similar to those measured with ammonia as an N source. With atrazine as an N source, the growth rate and the phenol degradation rate were reduced to ∼35% of those obtained for cyanuric acid. This presents clear evidence that although the first three enzymes of the atrazine degradation pathway are constitutively present, either these enzymes or the uptake of atrazine is the bottleneck that diminishes the growth rate of Pseudomonas sp. strain ADP with atrazine as an N source. Whereas atrazine and cyanuric acid showed no significant toxic effect on the cells, phenol reduces growth and activates or induces typical membrane-adaptive responses known for the genus Pseudomonas. Therefore Pseudomonas sp. strain ADP is an ideal bacterium for the investigation of the regulatory interactions among several catabolic genes and stress response mechanisms during the simultaneous degradation of toxic phenolic compounds and a xenobiotic N source such as atrazine.
机译:假单胞菌菌株。 ADP菌株能够降解at去津作为唯一的氮源,因此需要单一的碳和能源来源才能生长。除了假单胞菌的典型碳源,即丁二酸钠外,菌株还可以以苯酚作为碳源生长。酚被多组分酚羟化酶氧化成邻苯二酚。使用邻苯二酚1,2-二加氧酶通过邻位途径降解邻苯二酚。可以刺激菌株以同时降解非常高浓度的苯酚(1,000毫克/升)和at去津(150毫克/升)。以at去津降解的主要中间体氰尿酸作为氮源,其生长速率和苯酚降解率均与氨氮作为氮源相似。以at去津为氮源,其生长速率和苯酚降解率降低至氰尿酸获得的约35%。这提供了明确的证据,尽管构成r去津降解途径的前三种酶是组成性存在的,但这些酶或of去津的摄取是降低假单胞菌sp。增长率的瓶颈。以at去津为氮源的ADP菌株。阿特拉津和氰尿酸对细胞没有明显的毒性作用,而苯酚减少了生长并激活或诱导了假单胞菌属已知的典型膜适应性反应。因此假单胞菌属。 ADP菌株是理想的细菌,可用于研究有毒酚类化合物和异源生物氮源(如阿特拉津)同时降解期间几种分解代谢基因之间的调控相互作用以及应激反应机制。

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