...
首页> 外文期刊>Folia microbiologica >Screening of pectinase-producing bacteria from farmlands and optimization of enzyme production from selected strain by RSM
【24h】

Screening of pectinase-producing bacteria from farmlands and optimization of enzyme production from selected strain by RSM

机译:从农田筛选果胶酶产生的细菌和RSM选定菌株的酶生产优化

获取原文
获取原文并翻译 | 示例
           

摘要

Pectinolytic enzymes that catalyze the breakdown of substrates containing pectin are widespread. Pectinases have potential applications in various industries, including food, animal feed, textile, paper, and fuel. In this study, one hundred bacterial isolates were collected from Marand city farmlands (Azarbaijan-E-Sharqi, Iran) and screened by MP medium on the base of pectinase activity considering the significance of pectinases. The results depicted that three isolates showed the most pectinase activity (more massive halo). The biochemical and molecular test results showed that the three screened bacteria were Enterobacter and named Enterobacter sp. MF41, Enterobacter sp. MF84, and Enterobacter sp. MF90. Enterobacter sp. MF84 had the largest halo, so this strain was selected for the study of its produced pectinase. The results exhibited that the produced enzyme has optimum temperature and pH for activity at 30 degrees C and in 9, respectively. Finally, the enzyme production by Enterobacter sp. MF84 is optimized using response surface methodology (RSM) considering four factors (NH4Cl, K2HPO4, pectin, and incubation time) as variables. The results showed that the optimization procedure increased the enzyme production up to 12 times (from 1.16 to 14.16 U/mg). The Pareto analysis revealed that ammonium chloride has a significant role in decreasing the enzyme production, probably by inducing the nitrification pathway enzymes in the presence of organic nitrogen in Enterobacter sp. MF84.
机译:催化含有果胶果胶粒的击穿的果胶溶解酶是很广泛的。果胶酶在各种行业中具有潜在的应用,包括食品,动物饲料,纺织品,纸和燃料。在这项研究中,从Marand City Fardlands(Azarbaijan-E-Sharqi,Iran)收集了一百个细菌分离株,并通过MP培养基对果胶酶的意义筛选的MP培养基筛选。所描述的结果表明,三个分离物显示出最多的果胶酶活性(更巨大的卤素)。生物化学和分子试验结果表明,三种筛选的细菌是肠道杆菌,命名为肠杆菌。 MF41,Enterobacter SP。 MF84和Enterobacter SP。 MF90。 enterobacter sp。 MF84具有最大的光环,因此选择该菌株用于研究其产生的果胶酶。结果表明,所生产的酶在30℃和9的活性中具有最佳温度和pH值。最后,通过肠杆菌的酶产生。 MF84使用响应表面方法(RSM)进行优化,考虑四个因子(NH4Cl,K2HPO4,果胶和孵化时间)作为变量。结果表明,优化程序增加了酶生产,高达12次(从1.16-14.16 U / mg)增加。帕累托分析显示,氯化铵在减少酶生产方面具有显着作用,可能是通过在肠杆菌SP的有机氮存在下诱导硝化途径酶。 MF84。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号