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Analysis of preference for carbon source utilization among three strains of aromatic compounds degrading Pseudomonas

机译:三种芳族化合物降解假鼠碳源利用偏好分析

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Soil isolates Pseudomonas putida CSV86, Pseudomonas aeruginosa PP4 and Pseudomonas sp. C5pp degrade naphthalene, phthalate isomers and carbaryl, respectively. Strain CSV86 displayed a diauxic growth pattern on phenylpropanoid compounds (veratraldehyde, ferulic acid, vanillin or vanillic acid) plus glucose with a distinct second lag-phase. The glucose concentration in the medium remained constant with higher cell respiration rates on aromatics and maximum protocatechuate 3,4-dioxygenase activity in the first log-phase, which gradually decreased in the second log-phase with concomitant depletion of the glucose. In strains PP4 and C5pp, growth profile and metabolic studies suggest that glucose is utilized in the first log-phase with the repression of utilization of aromatics (phthalate or carbaryl). All three strains utilize benzoate via the catechol 'ortho' ring-cleavage pathway. On benzoate plus glucose, strain CSV86 showed preference for benzoate over glucose in contrast to strains PP4 and C5pp. Additionally, organic acids like succinate were preferred over aromatics in strains PP4 and C5pp, whereas strain CSV86 co-metabolizes them. Preferential utilization of aromatics over glucose and co-metabolism of organic acids and aromatics are found to be unique properties of P. putida C5V86 as compared with strains PP4 and C5pp and this property of strain CSV86 can be exploited for effective bioremediation.
机译:土壤分离物Pseudomonas putida CSV86,假单胞菌铜绿假单胞菌PP4和假单胞菌SP。 C5PP分别降解萘,邻苯二甲酸异构体和氨基甲醛。菌株CSV86在苯丙醇丙烷化合物(Veratraldehyde,阿魏酸,香草蛋白或香草醛酸)上显示了一种辅助生长模式,以及具有不同第二滞后相的葡萄糖。培养基中的葡萄糖浓度仍然具有更高的细胞呼吸速率对芳族的呼吸速率和第一对立阶段的最大原料加工3,4-二氧基酶活性,其在第二对型逐渐消耗葡萄糖中逐渐降低。在菌株PP4和C5PP中,生长概况和代谢研究表明,葡萄糖在第一次登录中使用抑制芳烃(邻苯二甲酸酯或氨基甲酸)的利用。所有三种菌株通过儿茶酚'ortho'环裂解途径使用苯甲酸盐。在苯甲酸加上葡萄糖,菌株CSV86表现出与菌株PP4和C5PP相比的苯甲酸盐的偏好。另外,琥珀酸盐等有机酸在菌株PP4和C5PP中优选芳族化合物,而菌株CSV86共同代谢它们。芳族化合物优先利用葡萄糖和有机酸的共代谢和芳烃的共代谢,与菌株PP4和C5PP相比,Putida C5V86的独特性质,并且可以利用这种菌株CSV86的性质进行有效的生物修复。

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