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We conclude that if the goal of ALS bioprocessing is maximal degradation of crop residues, including cellulose, then retention times of 10 days or longer will be needed.
The optimal pH, temperature and inoculum size were found to be 6.83, 34.59 °C (∼35 °C) and 0.59 g L−1 respectively to achieve maximal degradation of PFF (93.39%).
The maximal degradation of MG was obtained to be 97.18% under the optimum conditions with the enzyme concentration of 1.50 U/mL, the dye concentration of 122.66 mg/L, pH of 6.75and the incubation time of 98.58 min.
Maximal degradation of MBP was detectable after 4 weeks of cuprizone exposure.
Remarkably, RHOBTB3 is able to form heterodimer with LIMD1, resulting in maximal degradation of HIF.
θ4 quantifies the siRNA oligomers concentration needed to achieve half of the maximal degradation of the targeted mRNA.
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The kinetic parameters d4 and θ4 depend on the efficiency of siRNA binding to its sites on the target mRNA [ 17]: d4 represents the maximal degradation rate of the mRNA due to RNA interference; θ4 the concentration of siRNA oligomers needed to achieve half of the maximal degradation rate.
This proves the mathematical robustness of Model 4. The only parameter changing between the two sets of experiment is θ4, which represents the concentration of siRNA oligomers needed to achieve half of the maximal degradation rate (d4).
Temperature of the maximal degradation rate.
For PLP and MOG maximal degradation was detectable after 5 weeks of cuprizone feeding.
Different optimal conditions yielding maximal degradation rates were established.
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