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Optimization of phytase production from escherichia coli by altering solids-state fermentation conditions

机译:通过改变固态发酵条件优化大肠杆菌的植酸酶生产

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摘要

Cultivation of Escherichia coli on wheat-bran substrate under various Solid-State Fermentation (SSF) conditions was evaluated for phytase yield along with the enzyme activity profile as a potential, low-cost alternative to submerged-liquid fermentation. The maximum phytase activity achieved by E. coli was 350 ± 50 SPU of phytase activity per gram of bran, incubated for 96 h with a substrate bed moisture content of 70% (w/v) at 37 °C with a relative air humidity of 90%, and supplemented with 10% (w/w bran) Luria-Bertani broth powder which translates into a 300% increase in phytase activity compared with an un-supplemented culture. The greatest improvements in phytase yield were associated with nutrient supplementation and the optimization of initial substrate moisture content. E. coli production of phytase utilizing solid-state fermentation technology was shown to be feasible utilizing the low-cost agro-residue wheat bran as substrate. Furthermore, the effect of pH and temperature on phytase activity was monitored from pH 2.5 to pH 7.5, and for temperatures ranging from 20 °C to 70 °C. Optimal phytase activity was at pH 5.5 and 50 °C when produced under the SSF optimized conditions.
机译:评估了在各种固态发酵(SSF)条件下在小麦麸皮底物上培养大肠杆菌的植酸酶产量以及酶活性谱,作为淹没液发酵的潜在低成本替代品。大肠杆菌获得的最大植酸酶活性为每克麸皮植酸酶活性为350±50 SPU,在37°C的相对床湿度为70%(w / v)的条件下孵育96 h 90%,并添加10%(w / w麸皮)Luria-Bertani肉汤粉,与未添加的培养物相比,植酸酶活性提高了300%。植酸酶产量的最大改善与营养补充和初始底物水分含量的优化有关。利用固态发酵技术生产大肠杆菌的植酸酶被证明是可行的,以低成本的农残麦麸为底物。此外,监测pH和温度对植酸酶活性的影响(从pH 2.5到pH 7.5,温度范围从20°C到70°C)。在SSF优化条件下生产时,最佳植酸酶活性为pH 5.5和50°C。

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