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首页> 外文期刊>Applied and Environmental Microbiology >Degradation of 2,4-dichlorophenoxyacetic acid by Pseudomonas cepacia DBO1(pRO101) in a dual-substrate chemostat.
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Degradation of 2,4-dichlorophenoxyacetic acid by Pseudomonas cepacia DBO1(pRO101) in a dual-substrate chemostat.

机译:洋葱假单胞菌DBO1(pRO101)在双底物化学恒温器中降解2,4-二氯苯氧基乙酸。

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To determine the effect of a secondary carbon source on biodegradation of a chloroaromatic compound, Pseudomonas cepacia DBO1(pRO101) was grown in continuous cultures on basal salts media containing various mixtures of 2,4-dichlorophenoxyacetic acid (2,4-D) and succinate. Both succinate and 2,4-D were metabolized over the entire range of dilution rates and compositions analyzed (0.05 to 0.6 h-1). 2,4-Dichlorophenol (DCP), the only intermediate detected, accumulated to significant amounts (10 to 21 mg/liter) in the chemostat only when the dilution rate was 0.4 h-1 or greater. At these concentrations, DCP reduced the apparent growth rate of P. cepacia DBO1(pRO101) in batch cultures by 15 to 35% over the apparent growth rate on succinate alone. Succinate fed to the chemostat increased the cell density as well as the percentage of 2,4-D that was consumed at each dilution rate. When the amount of succinate in the feed exceeded the amount of 2,4-D, the specific rates of 2,4-D degradation in the chemostat or by washed cells were significantly lower than the specific rates for cells grown on 2,4-D alone, suggesting repression by succinate. However, when the amount of 2,4-D in the feed exceeded the amount of succinate, the specific rates of 2,4-D degradation remained at values equivalent to or higher than the specific rate for cells grown on 2,4-D alone. DCP accumulated significantly in the washed-cell assay, suggesting that the level of DCP hydroxylase is rate limiting.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:为了确定次要碳源对氯代芳香族化合物生物降解的影响,在包含2,4-二氯苯氧乙酸(2,4-D)和琥珀酸酯的各种混合物的基础盐培养基上连续培养了假单胞菌DBO1(pRO101)。 。琥珀酸和2,4-D在稀释率的整个范围内均被代谢,并分析了组成(0.05至0.6 h-1)。仅在稀释率大于或等于0.4 h-1时,检测到的唯一中间体2,4-二氯苯酚(DCP)才在化学恒温器中大量积累(10至21 mg / L)。在这些浓度下,DCP使分批培养中的洋葱伯克霍尔德菌DBO1(pRO101)的表观生长速率比仅琥珀酸盐的表观生长速率降低了15%至35%。进料到化学恒温器的琥珀酸盐增加了细胞密度以及在每种稀释率下消耗的2,4-D百分比。当饲料中琥珀酸盐的量超过2,4-D的量时,在恒化器中或经洗涤的细胞中2,4-D的特定降解速率明显低于在2,4-上生长的细胞的特定降解速率。单独的D表示受到琥珀酸的抑制。但是,当饲料中2,4-D的量超过琥珀酸盐的量时,2,4-D的降解率保持在等于或高于在2,4-D上生长的细胞的比值。单独。 DCP在洗涤细胞测定中大量积累,表明DCP羟化酶的水平受到速率的限制(摘要截断为250个字)

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