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Soil Microbial Dynamics Modeling in Fluctuating Ecological Situations by Using Subtractive Clustering and Fuzzy Rule-Based Inference Systems

机译:使用减法聚类和基于模糊规则的推断系统在波动生态学中的土壤微生物动力学建模

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Microbial population and enzyme activities are the significant indicators of soil strength.Soil microbial dynamics characterize microbial population and enzyme activities.The present study explores the development of efficient predictive modeling systems for the estimation of specific soil microbial dynamics,like rock phosphate solubilization,bacterial population,and ACC-deaminase activity.More specifically,optimized subtractive clustering(SC)and Wang and Mendel''s(WM)fuzzy inference systems(FIS)have been implemented with the objective to achieve the best estimation accuracy of microbial dynamics.Experimental measurements were performed using controlled pot experiment using minimal salt media with rock phosphate as sole carbon source inoculated with phosphate solubilizing microorganism in order to estimate rock phosphate solubilization potential of selected strains.Three experimental parameters,including temperature,pH,and incubation period have been used as inputs SC-FIS and WM-FIS.The better performance of the SC-FIS has been observed as compared to the WM-FIS in the estimation of phosphate solubilization and bacterial population with the maximum value of the coefficient of determination(0.9988)2 R=in the estimation of previous microbial dynamics.
机译:微生物种群和酶活性是土壤强度的重要指标。本研究探讨了微生物种群的微生物动力学表征微生物种群和酶活性。探讨特定土壤微生物动力学估算的有效预测建模系统的发展,如岩石磷溶解,细菌种群和Acc-deaminase Activity.more具体而言,优化的减法聚类(SC)和Wang和Mendel'(WM)模糊推理系统(FIS)已经实现了目的,以实现微生物动力学的最佳估计精度。实验测量使用受控罐实验进行使用最小的盐培养基,作为磷酸盐作为磷酸盐溶解微生物的唯一碳源,以估计所选菌株的岩石溶解电位。使用温度,pH和孵育期的三种实验参数,包括输入SC-FIS和WM -FIS.TH在磷酸盐溶解和细菌群的估计中,已经观察到SC-FIS的更好的性能,并且在磷酸盐溶解和细菌群体的估计系数(0.9988)2 r =在先前的微生物动态估计中。

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