首页> 外文期刊>ScientificWorldJournal >β-Fructofuranosidase and β –D-Fructosyltransferase from New Aspergillus carbonarius PC-4 Strain Isolated from Canned Peach Syrup: Effect of Carbon and Nitrogen Sources on Enzyme Production
【24h】

β-Fructofuranosidase and β –D-Fructosyltransferase from New Aspergillus carbonarius PC-4 Strain Isolated from Canned Peach Syrup: Effect of Carbon and Nitrogen Sources on Enzyme Production

机译:β-果呋喃糖苷酶和β-D - 果糖转移酶从罐装桃子糖浆中分离的新曲霉Colamarius PC-4菌株:碳和氮源对酶生产的影响

获取原文
获取外文期刊封面目录资料

摘要

β-fructofuranosidase (invertase) and β-D-fructosyltransferase (FTase) are enzymes used in industrial processes to hydrolyze sucrose aiming to produce inverted sugar syrup or fructooligosaccharides. In this work, a black Aspergillus sp. PC-4 was selected among six filamentous fungi isolated from canned peach syrup which were initially screened for invertase production. Cultivations with pure carbon sources showed that invertase and FTase were produced from glucose and sucrose, but high levels were also obtained from raffinose and inulin. Pineapple crown was the best complex carbon source for invertase (6.71 U/mL after 3 days of cultivation) and FTase production (14.60 U/mL after 5 days of cultivation). Yeast extract and ammonium chloride nitrogen sources provided higher production of invertase (6.80 U/mL and 6.30 U/mL, respectively), whereas ammonium nitrate and soybean protein were the best nitrogen sources for FTase production (24.00 U/mL and 24.90 U/mL, respectively). Fermentation parameters for invertase using yeast extract were YP/S = 536.85 U/g and PP = 1.49 U/g/h. FTase production showed values of YP/S = 2,627.93 U/g and PP = 4.4 U/h using soybean protein. The screening for best culture conditions showed an increase of invertase production values by 5.10-fold after 96?h cultivation compared to initial experiments (fungi bioprospection), while FTase production increased by 14.60-fold (44.40 U/mL) after 168?h cultivation. A. carbonarius PC-4 is a new promising strain for invertase and FTase production from low cost carbon sources, whose synthesized enzymes are suitable for the production of inverted sugar, fructose syrups, and fructooligosaccharides.
机译:β-果呋喃糖苷酶(转化酶)和β-D-果糖转移酶(FTase)是工业过程中使用的酶,以水解蔗糖,旨在产生倒糖糖浆或果寡糖。在这项工作中,黑色曲霉菌sp。在最初筛选转化酶生产的罐装桃子糖浆中分离的六个丝状真菌中,选择了PC-4。具有纯碳源的培养表明,来自葡萄糖和蔗糖产生的转化酶和FTase,但也从紫红色和菊粉获得高水平。菠萝冠是转化酶的最佳复合碳源(培养3天后6.71u / ml)和FTase生产(培养5天后14.60 u / ml)。酵母提取物和氯化铵氮源提供了更高的转化酶(6.80u / ml和6.30u / ml)的生产,而硝酸铵和大豆蛋白是FTase生产的最佳氮源(24.00u / ml和24.90u / ml , 分别)。使用酵母提取物的转化酶发酵参数是YP / S = 536.85 U / g和PP = 1.49 U / G / h。使用大豆蛋白显示FTase生产显示YP / S = 2,627.93u / g和pp = 4.4u / h的值。与初始实验(真菌生物缺陷)相比,最佳培养条件的筛查显示,在96℃培养后,在96℃培养后的转化酶产生值增加5.10倍,而168次培养后,FTase产量增加了14.60倍(44.40 u / ml) 。 A. CarbonArius PC-4是一种新的逆变酶和来自低成本碳源产生的有前景菌株,其合成酶适用于倒糖,果糖糖浆和果寡糖的生产。

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