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首页> 外文期刊>Bulgarian Journal of Agricultural Science >BIODEGRADATION OF PHENOL, CATECHOL AND 2, 4-DICHLOROPHENOLAT HIGHER INITIAL INHIBITORY CONCENTRATIONS BY TRAMETES VERSICOLOR 1IN A 'FED-BATCH' PROCESS
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BIODEGRADATION OF PHENOL, CATECHOL AND 2, 4-DICHLOROPHENOLAT HIGHER INITIAL INHIBITORY CONCENTRATIONS BY TRAMETES VERSICOLOR 1IN A 'FED-BATCH' PROCESS

机译:苯酚,儿茶酚和2,4-二氯苯酚的生物降解较高的初始抑制浓度Versicolor 1in A“Fed-Batch”过程

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Biodegradation of phenol, catechol and 2,4-dichlorophenol, at higher initial inhibitory concentrations, by Trametes versicolor 1 in a "fed-batch" process is investigated. The strain (2.5 g biomass) biodegrades total 7.45 g phenol for 20 days at initial phenol concentration of 1.0 g/dm3 and 6 feedings with concentration 1 g/dm3. At initial concentration of catechol and 2,4-dichlorophenol 2.0 g/dm3 and feedings with same concentration, the culture (2.5 g biomass) biodegrades respectively total 11.13 gcatechol for 22 days at 5 feedings and 3.03 g 2,4-dichlorophenol at 1 feeding for 6 days. It is established that Trametes versicolor 1 synthesizes phenol-hydroxylase, catechol 1,2-oxygenase and laccase - enzymes, required for biodegradation and biotransformation of the above phenolic substrates. Laccase production depends on the nature of the substrate. Strain produces considerable amount of laccase reaching to 1343.3 U/cm3 in medium containing catechol but the enzyme is not being synthesized in the medium comprised of 2,4-dichlorophenol as sole carbon and energy source. The enzyme activities of phenol hydroxylase h catechol 1,2- oxygenase are higher in media with catechol than in media with other two phenolic compounds. At the end of the biodegradation process of the phenolic compounds, the second enzyme of the catabolic pathway - catechol 1,2-oxygenase is not identified in the medium. The absence of the second enzyme of the metabolic pathway is probably the decisive factor for the termination of thebiodegradation process.
机译:研究了在“美联储批料”过程中,在较高的初始抑制浓度下,在较高的初始抑制浓度下,在“美联储批次”过程中,在较高的初始抑制浓度下生物降解。菌株(2.5g生物质)生物降解总量为7.45g苯酚20天,初始酚浓度为1.0g / dm3和6次饲料,浓度为1g / dm3。在儿茶酚和2,4-二氯苯酚2.0g / dm3的初始浓度下,培养物(2.5g生物质)培养物(2.5g生物质)分别为11.13gcaTechol,在5件喂食中22天22天,在1次喂食时为3.03g 2,4-二氯苯酚6天。确定Trametes Versicolor 1合成酚类 - 羟基化酶,儿茶酚1,2-氧酶和漆酶 - 酶,用于上述酚类基材的生物降解和生物转化。漆酶生产取决于基材的性质。菌株在含有儿茶酚中达到1343.3u / cm 3的诱导量产生相当大量的漆酶,但是在由2,4-二氯苯酚作为唯一碳和能量源组成的培养基中不合成酶。苯酚羟化酶H儿茶酚1,2-氧酶的酶活性与儿茶酚中的培养基高于与其他两个酚类化合物的培养基。在酚类化合物的生物降解过程结束时,在培养基中未鉴定分解代谢途径的第二酶 - 儿茶酚1,2-氧酶。不存在代谢途径的第二种酶可能是终止的脱光过程的决定性因素。

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