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Comparing various evolutionary algorithms on the parameter optimization of the valine and leucine biosynthesis in corynebacterium glutamicum

机译:谷氨酸棒杆菌缬氨酸和亮氨酸生物合成参数优化的各种进化算法比较

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Parameter estimation for biochemical model systems has become an important problem in systems biology. Here we focus on the metabolic subnetwork of the valine and leucine biosynthesis in C. glutamicum. Due to the lack of indisputable information regarding reversibility of the reactions in the pathway we derived two alternative ordinary differential equation models based on the formalisms of the generalized mass-action rate law. We introduced two alternative modeling approaches for feedback inhibition and evaluated the applicability of six optimization procedures (multi start Hill Climber, binary and real valued Genetic Algorithm, standard and covariance matrix adaption Evolution Strategy as well as Simulated Annealing) to the problem of parameter fitting. The model considering irreversible reactions performed worse and was therefore rejected from further analysis. We benchmarked the impact of different mutation and crossover operators as well as the influence of the population size on the remaining system and the two best optimization procedures namely binary Genetic Algorithm and the Evolution Strategy. The GA performed best on average and found the best total result based on the relative squared error.
机译:生物化学模型系统的参数估计已成为系统生物学的重要问题。在这里,我们专注于谷氨酰胺中缬氨酸和亮氨酸生物合成的代谢子网络。由于缺乏关于途径中反应的可逆性的无可争议的信息,我们基于推广大规模率法的形式主义来源的两个替代的常规方程模型。我们介绍了两种反馈抑制的替代建模方法,并评估了六种优化程序的适用性(Multi Start Hill登山者,二元和真实值遗传算法,标准和协方差矩阵适应演化策略以及模拟退火)对参数配件的问题。考虑不可逆反应的模型更差,因此从进一步的分析中拒绝。我们基准对不同突变和交叉运营商的影响以及人口大小对剩余系统的影响以及两种最佳优化程序即二进制遗传算法和演化策略。 GA平均执行最佳,并找到基于相对平方误差的最佳总结果。

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