首页> 外文期刊>Journal of Bioremediation & Biodegradation >Metabolism and Preferential Utilization of Phenylacetic acid and 4-Hydroxyphenylacetic Acid in Pseudomonas putida CSV86
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Metabolism and Preferential Utilization of Phenylacetic acid and 4-Hydroxyphenylacetic Acid in Pseudomonas putida CSV86

机译:恶臭假单胞菌CSV86中苯乙酸和4-羟基苯乙酸的代谢及优选利用

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Metabolic pathways for phenylaceticacid (PA) and 4-hydroxyphenylacetic acid (4-HPA) from Pseudomonas putida CSV86 were elucidated. PA grown strain CSV86 cells showed higher oxygen-uptake on PA as compared to hydroxyphenylacetic acids. Detection of phenylacetyl-CoA ligase and absence of 4-hydroxyphenylacetic acid hydroxylase (4HPAH) and 3,4-dihydroxyphenylacetic acid-dioxygenase (3,4-DHPADO) activity supports this observation. 4-HPA grown cells showed oxygen-uptake on 4-HPA and 3,4-dihydroxyphenylacetic acid (3,4-DHPA) but showed significantly lower respiration rates on 2,5-dihydroxyphenylacetic acid and PA. Detection of 4HPAH and 3,4-DHPADO activities support the respiration data. Metabolic studies indicate that strain CSV86 metabolizes PA via phenylacetyl-CoA while 4-HPA via 3,4-DHPA pathway. Glucose grown cells showed lower activity of enzymes and respiration on PA, 4-HPA and 3,4-DHPA, suggesting that pathways are inducible. When grown on double carbon sources such as PA or 4-HPA plus glucose, CSV86 cells showed diauxic growth pattern with oxygen uptake on PA, 4-HPA and 3,4-DHPA in the first log-phase which was reduced during the second log-phase with increase in the respiration rate on glucose. This observation was supported by detection of high 4HPAH and 3,4-DHPADO activity in the first log-phase and glucose-6-phosphate dehydrogenase activity in the second log-phase. These results suggest that strain CSV86 utilizes PA and 4-HPA preferentially over glucose.
机译:阐明了恶臭假单胞菌CSV86中苯乙酸(PA)和4-羟基苯乙酸(4-HPA)的代谢途径。与羟基苯乙酸相比,PA生长的菌株CSV86细胞显示出更高的PA吸氧量。检测苯乙酰基-CoA连接酶和不存在4-羟苯基乙酸羟化酶(4HPAH)和3,4-二羟基苯基乙酸-双加氧酶(3,4-DHPADO)活性支持了这一观察。 4-HPA生长的细胞在4-HPA和3,4-二羟基苯基乙酸(3,4-DHPA)上显示出氧吸收,但在2,5-二羟基苯基乙酸和PA上显示出明显更低的呼吸速率。检测4HPAH和3,4-DHPADO活动可支持呼吸数据。代谢研究表明,菌株CSV86通过苯乙酰辅酶A代谢PA,而通过3,4-DHPA途径代谢4-HPA。葡萄糖生长的细胞在PA,4-HPA和3,4-DHPA上显示出较低的酶活性和呼吸作用,表明该途径是可诱导的。当在双碳源(例如PA或4-HPA加上葡萄糖)上生长时,CSV86细胞显示出双生生长模式,在第一个对数期对PA,4-HPA和3,4-DHPA的吸氧量在第二个对数期减少葡萄糖呼吸频率增加。在第一个对数阶段检测到高4HPAH和3,4-DHPADO活性,在第二个对数阶段检测到葡萄糖-6-磷酸脱氢酶活性,为这一观察提供了支持。这些结果表明,菌株CSV86比葡萄糖优先利用PA和4-HPA。

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