预测毛霉菌株纤维素酶产量的琼脂平板筛选与固态发酵之间的相关性

Q2 Biochemistry, Genetics and Molecular Biology
Enzyme Research Pub Date : 2012-01-01 Epub Date: 2012-11-28 DOI:10.1155/2012/793708
Camila Florencio, Sonia Couri, Cristiane Sanchez Farinas
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引用次数: 0

摘要

将生物质转化为生物燃料和化学品的可行性仍需要进一步开发,以降低酶的生产成本。因此,开发高效的纤维素酶生产微生物筛选程序的需求日益增长。这项工作将琼脂平板检测法的定性筛选与固态发酵(SSF)培养过程中纤维素酶产量的定量测量联系起来。最初的筛选步骤包括观察 78 株毛霉属预选菌株在以微晶纤维素为碳源的平板上的生长情况。能够在这种基质上生长的 49 株菌株随后接受了第二步筛选,即刚果红试验。通过这项试验,选出了 10 株酶指数(EI)最高的菌株,其数值在 1.51 到 1.90 之间。使用选定的菌株,以甘蔗渣和麦麸为底物进行 SSF 培养。CG 104NH 菌株的 EG 酶活性最高(25.93 UI-g(-1))。将平板筛选过程中获得的 EI 结果与 SSF 条件下的纤维素酶产量进行了比较。刚果红试验与 SSF 之间的相关系数(R(2))为 0.977,表明这两种方法非常一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Correlation between Agar Plate Screening and Solid-State Fermentation for the Prediction of Cellulase Production by Trichoderma Strains.

Correlation between Agar Plate Screening and Solid-State Fermentation for the Prediction of Cellulase Production by Trichoderma Strains.

Correlation between Agar Plate Screening and Solid-State Fermentation for the Prediction of Cellulase Production by Trichoderma Strains.

Correlation between Agar Plate Screening and Solid-State Fermentation for the Prediction of Cellulase Production by Trichoderma Strains.

The viability of converting biomass into biofuels and chemicals still requires further development towards the reduction of the enzyme production costs. Thus, there is a growing demand for the development of efficient procedures for selection of cellulase-producing microorganisms. This work correlates qualitative screening using agar plate assays with quantitative measurements of cellulase production during cultivation under solid-state fermentation (SSF). The initial screening step consisted of observation of the growth of 78 preselected strains of the genus Trichoderma on plates, using microcrystalline cellulose as carbon source. The 49 strains that were able to grow on this substrate were then subjected to a second screening step using the Congo red test. From this test it was possible to select 10 strains that presented the highest enzymatic indices (EI), with values ranging from 1.51 to 1.90. SSF cultivations using sugarcane bagasse and wheat bran as substrates were performed using selected strains. The CG 104NH strain presented the highest EGase activity (25.93 UI·g(-1)). The EI results obtained in the screening procedure using plates were compared with cellulase production under SSF. A correlation coefficient (R(2)) of 0.977 was obtained between the Congo red test and SSF, demonstrating that the two methodologies were in good agreement.

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来源期刊
Enzyme Research
Enzyme Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
4.60
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