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Continuous Saccharification of Laminarin by Immobilized Laminarinase ULam111 Followed by Ethanol Fermentation with a Marine-Derived Yeast

机译:固定的层状酶Ulam111通过固定的层状酶ulam111连续糖化,然后用乙醇发酵与海洋衍生的酵母

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We isolated a novel laminarinase ULam111 from Flavobacterium sp. strain UMI-01. Purified ULam111 showed degradation activity against laminarin with the specific activity of 224 ± 18 U/mg at 30°C and pH 6.0. Its optimum temperature was 50°C, and degradation activities against laminarin were observed at 4°C - 80°C. With a laminarin degradation system, we investigated the preparation and properties of immobilized ULam111 with the use of the 11 types of carriers. The high activity recoveries of immobilized ULam111 were as follows: 19.4% for IB-S60P carrier beads (the non-ionic type), 15.6% for IB-S60S carrier beads (the non-ionic type), 11.9% for IB-150P carrier beads (the covalent type), and 7.1% for IB-C435 carrier beads (the cationic type). With the repeated use of immobilized ULam111, the enzyme activities immobilized on IB-S60S and those on IB-S60P remained at 40% and 30% respectively after the sixth trial. We selected IB-S60S as suitable beads for enzyme immobilization, and we attempted to construct a reactor system with ULam111 immobilized on IB-S60S beads. In this system, 1.2 - 1.9 g/L glucose was repeatedly produced from 30 mg/mL laminarin solutions after 20 hr when the reactor operation was repeated 10 times. We examined ethanol fermentation from the saccharified solutions with a marine-derived yeast (Saccharomyces cerevisiae C-19), and 0.51 - 0.58 g/L bioethanol was produced from the saccharified solution that contained 1.71 - 1.86 g/L of glucose.
机译:我们从香料SP中孤立新型层内酶Ulam111。菌株UMI-01。纯化的ULAM111显示了对层状蛋白的降解活性,其特定活性为224±18u / mg,在30℃和pH6.0。其最佳温度为50℃,在4℃-80℃下观察到逆膜蛋白的降解活性。通过层流降解系统,我们研究了使用11种载体的固定化ULAM111的制备和性质。固定化UlaM111的高活性回收率如下:19.4%对于IB-S60P载体(非离子型),IB-S60S载体珠(非离子型)的15.6%,对于IB-150P载体,11.9%对于IB-C435载体珠粒(阳离子型),珠子(共价型)和7.1%。随着重复使用固定的ULAM111,在第六次试验后,在IB-S60s上固定在IB-S60s上的酶活性,IB-S60P的酶活性分别为40%和30%。我们选择IB-S60S作为酶固定化的合适珠子,我们试图用固定在IB-S60S珠子上的ULAM111构建反应器系统。在该系统中,当反应器操作重复10次时,在20小时后重复产生1.2-1.9g / L葡萄糖在20小时后从30mg / ml层键溶液中产生。我们将乙醇发酵从糖化溶液中用亚胺衍生的酵母(酿酒酵母C-19),并由含有1.71-1.86g / L葡萄糖的糖化溶液制备0.51-0.58g / L生物乙醇。

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