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Effect of carbon and nitrogen sources on simultaneous production of α-amylase and green food packaging polymer by Bacillus sp. CFR 67

机译:碳源和氮源对芽孢杆菌同时生产α-淀粉酶和绿色食品包装聚合物的影响。病死率67

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摘要

In this paper, effect of different carbon and nitrogen sources, including hydrolysates of rice bran and wheat bran, on simultaneous production of α-amylase (for hydrolysis of starch in food systems) and polyhydroxyalkanoates (PHA, a green biopolymer, which can be used as a packing material for foods) by Bacillus sp. CFR 67 was studied by submerged fermentation. Amongst various carbon sources tested, glucose and sucrose supported production of significantly (P < 0.05) higher amount of α-amylase (66 U/ml) and PHA (444 mg/l), respectively. Of the nitrogen sources tested, ammonium acetate and beef extract led to the production of maximum amount of amylase (36 U/ml) and PHA (592 mg/l), respectively. Supplementation of the production medium with wheat bran hydrolysate (50 ml/l) produced significantly higher amounts of amylase (73 U/ml) and PHA (524 mg/l). Thus this study indicated the potential of agro-residues for the production of value added biomolecules, which can reduce the cost of production of these molecules and enables to reduce the pollution mainly caused by the use of non biodegradable plastics.
机译:在本文中,不同的碳和氮源(包括米糠和麦麸的水解产物)对同时生产α-淀粉酶(用于食品体系中的淀粉水解)和聚羟基链烷酸酯(PHA,一种绿色生物聚合物)的影响用作食品包装材料)。通过深层发酵研究了CFR 67。在测试的各种碳源中,葡萄糖和蔗糖分别支持显着(P <0.05)更高数量的α-淀粉酶(66 U / ml)和PHA(444 mg / l)的产生。在测试的氮源中,乙酸铵和牛肉提取物分别产生最大量的淀粉酶(36 U / ml)和PHA(592 mg / l)。用麦麸水解产物(50 ml / l)补充生产培养基产生的淀粉酶(73 U / ml)和PHA(524 mg / l)明显更高。因此,这项研究表明了农业残留物生产增值生物分子的潜力,这可以降低这些分子的生产成本,并能够减少主要由使用不可生物降解的塑料引起的污染。

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