Modelling the Growth Inhibition Kinetics of Rhodotorula sp. strain MBH23 (KCTC 11960BP) on Acrylamide

A. Othman, M. Rahim
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引用次数: 15

Abstract

The yeast Rhodotorula sp. Strain MBH23 (KCTC 11960BP) is an efficient acrylamide-degrader and is able to tolerate high concentrations of acrylamide. A primary modelling exercise for the growth of this yeast on acrylamide yields important specific growth rates which were utilized successfully for secondary modelling exercise which gave Luong as the best model. The Luong’s constants; maximal growth rate, half-saturation constant for maximal growth, maximal concentration of substrate tolerated and curve parameter that defines the steepness of the growth rate decline from the maximum rate symbolized by max, Ks, Sm, and n (± standard error) were 0.099±0.017 hr-1, 17.34 ± 5.0 mg/L, 2053.0 ±56.0 mg/L and 0.801±0.202, respectively. The Luong model indicates that acrylamide is toxic and inhibits the growth of this yeast. To date, this is the first time that such a modelling exercise was utilized to model growth kinetics on acrylamide.
红霉菌菌株MBH23 (KCTC 11960BP)对丙烯酰胺的生长抑制动力学模拟
酵母Rhodotorula sp.菌株MBH23 (KCTC 11960BP)是一种高效的丙烯酰胺降解菌,能够耐受高浓度丙烯酰胺。对这种酵母在丙烯酰胺上的生长进行了初步模拟,得出了重要的特定增长率,并成功地用于二次模拟,使Luong成为最佳模型。luong常数;最大生长速率、最大生长的半饱和常数、最大底物耐受浓度和定义生长速率从最大速率下降的陡峭度的曲线参数(±标准误差)分别为0.099±0.017 hr-1、17.34 ±5.0 mg/L、2053.0 ±56.0 mg/L和0.801±0.202。梁的模型表明丙烯酰胺是有毒的,可以抑制这种酵母的生长。迄今为止,这是第一次利用这样的建模练习来模拟丙烯酰胺的生长动力学。
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