来自 EFB 堆肥的枯草芽孢杆菌 ADI1 的胞外木聚糖分解酵素

International Scholarly Research Notices Pub Date : 2017-04-24 eCollection Date: 2017-01-01 DOI:10.1155/2017/7831954
Muhammad Hariadi Nawawi, Rosfarizan Mohamad, Paridah Md Tahir, Wan Zuhainis Saad
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摘要

微生物木聚糖酶和果胶酶是两种极有价值的酶,备受关注。这从许多工业部门对这些酶的需求增加就可以看出。本研究调查了在浸没式发酵(SmF)中分离和筛选产生胞外木聚糖果胶酶的细菌。样本是从马来西亚博特拉大学生物精炼厂的生物堆肥试验工厂的空果束堆肥(EFB)中收集的。实验结果显示,在 20 个分离物中,11 个分离物具有木聚糖酶或/和果胶酶活性,只有一个分离物(EFB-11)同时具有木聚糖酶和果胶酶活性。这些活性可用于浸没发酵(定量筛选)中的酶生产。在培养温度为 30℃、添加 2%(w/v)米糠作为碳源的条件下,培养 72 小时后,木聚糖酶和果胶酶的产量最高,分别为 42.33 U/mL和 62.17 U/mL(纤维素酶含量较低)。同时,培养基的 pH 值变为 8.42,这表明 EFB-11 分离物是耐碱菌,被鉴定为枯草芽孢杆菌 ADI1。该菌株被证明具有农业工业生物转化的潜力,并有望扩大到工业规模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Extracellular Xylanopectinolytic Enzymes by <i>Bacillus subtilis</i> ADI1 from EFB's Compost.

Extracellular Xylanopectinolytic Enzymes by Bacillus subtilis ADI1 from EFB's Compost.

Microbial xylanase and pectinase are two extremely valuable enzymes, which have captivated much attention. This can be seen from the increased demand for these enzymes by many industrial sectors. This study investigates the isolation and screening of extracellular xylanopectinolytic enzymes-producing bacteria in a submerged fermentation (SmF). Samples are collected from the compost of empty fruit bunch (EFB) at Biocompost Pilot Plant, located at Biorefinery Plant, Universiti Putra Malaysia. From the experiment, out of 20 isolates, 11 isolates show xylanase or/and pectinase activity, and only one isolate (EFB-11) shows the concurrent activities of xylanase and pectinase. These activities are selected for enzyme production under submerged fermentation (quantitative screening). At the 72nd hour of incubation, xylanase and pectinase show the highest production, which ranges about 42.33 U/mL and 62.17 U/mL (with low amount of cellulase present), supplemented with 2% (w/v) of rice bran as carbon source at incubation temperature level, which is 30°C. Meanwhile, the pH of media is shifted to 8.42, which indicates that EFB-11 isolate is alkalotolerant bacteria and identified as Bacillus subtilis ADI1. This strain proves to have potential in agroindustrial bioconversion and has a promising ability to scale up to an industrial scale.

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