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首页> 外文期刊>Journal of microbiology and biotechnology >Effective Microwell Plate-Based Screening Method for Microbes Producing Cellulase and Xylanase and Its Application
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Effective Microwell Plate-Based Screening Method for Microbes Producing Cellulase and Xylanase and Its Application

机译:基于微孔板的产纤维素酶和木聚糖酶微生物的高效筛选方法及其应用

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摘要

Cellulose and xylanase are main hydrolysis enzymes for the degradation of cellulosic and hemicellulosic biomass, respectively. In this study, our aim was to develop and test the efficacy of a rapid, high-throughput method to screen hydrolytic-enzyme-producing microbes. To accomplish this, we modified the 3,5-dinitrosalicylic acid (DNS) method for microwell plate-based screening. Targeted microbial samples were initially cultured on agar plates with both cellulose and xylan as substrates. Then, isolated colonies were subcultured in broth media containing yeast extract and either cellulose or xylan. The supernatants of the culture broth were tested with our modified DNS screening method in a 96-microwell plate, with a 200 mu l total reaction volume. In addition, the stability and reliability of glucose and xylose standards, which were used to determine the enzymatic activity, were studied at 100 degrees C for different time intervals in a dry oven. It was concluded that the minimum incubation time required for stable color development of the standard solution is 20 mm. With this technique, we successfully screened 21 and 31 cellulose- and xylanase-producing strains, respectively, in a single experimental trial. Among the identified strains, 19 showed both cellulose and xylan hydrolyzing activities. These microbes can be applied to bioethanol production from cellulosic and hemicellulosic biomass.
机译:纤维素和木聚糖酶分别是降解纤维素和半纤维素生物质的主要水解酶。在这项研究中,我们的目的是开发和测试一种快速,高通量的方法来筛选产生水解酶的微生物的功效。为实现此目的,我们修改了3,5-二硝基水杨酸(DNS)方法,用于基于微孔板的筛选。首先在纤维素和木聚糖为底物的琼脂平板上培养目标微生物样品。然后,将分离的菌落在含有酵母提取物和纤维素或木聚糖的肉汤培养基中传代培养。用我们改良的DNS筛选方法在96微孔板上测试培养液的上清液,总反应体积为200μl。此外,用于确定酶活性的葡萄糖和木糖标准品的稳定性和可靠性在干燥炉中于100摄氏度下进行了不同时间间隔的研究。结论是,标准溶液稳定发色所需的最短孵育时间为20 mm。通过这项技术,我们在一项实验中分别成功地筛选出21和31种产生纤维素酶和木聚糖酶的菌株。在鉴定出的菌株中,有19种同时显示纤维素和木聚糖的水解活性。这些微生物可用于由纤维素和半纤维素生物质生产生物乙醇。

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