土壤条件下玉米秸秆纤维素酶的高产研究

Q3 Agricultural and Biological Sciences
S. Ashok, Renuka Siddanna, Reshma Sirasagar, Shilanjali Bhalerao, A. Dayanand
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引用次数: 2

摘要

在固态条件下,利用玉米秸秆作为唯一的碳底物,利用放线菌链霉菌(Streptomyces enissocaesilis DQ026641)在胞外生产纤维素酶。通过人工调节重要的工艺变量,如底物(粒径、含水率)、微生物(接种量)、理化属性(pH、温度)和矿物盐(NaCl、MgSO4、FeSO4),按照一个因素一个因素的方法优化了纤维素酶的快速生产。在粒径为2 mm、含水量为1.25%、温度为45℃、接种量为1 × 108、NaCl为1.5%的条件下,纤维素酶的最大产量为71.10 IU/ml。以pH 6.5、温度45℃、氯化钠1.5%为关键工艺变量,采用响应面法和中心复合设计,提高了纤维素酶的产量(79 IU/ml)。pH、温度和氯化钠的二次影响对玉米秸秆在固态条件下产生纤维素酶有显著影响,而玉米秸秆是由s.e enissocaesilis DQ026641介导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Upsurge production of cellulase from maize stover under soildstate conditions mediated by Streptomyces enissocaesilis DQ026641
Maize stover was explored as a sole substrate of carbon for the extra cellular production of cellulase under solid-state conditions by an actinobacterium, Streptomyces enissocaesilis DQ026641. The upsurge production of cellulase was optimized manually regulating important process variables such as substrate (particle size, moisture content), organism (inoculum size), physicochemical attributes (pH, temperature) and mineral salts (NaCl, MgSO4, FeSO4) following one factor at a time approach. The maximum production (71.10 IU/ml) of cellulase was obtained at particle size 2 mm, moisture content 1.25%, temperature 45°C, inoculum size 1 × 108 and NaCl 1.5%. Enhanced production (79 IU/ml) of cellulase was achieved by following Response Surface Methodology with Centre Composite Design, considering pH 6.5, temperature 45°C and sodium chloride 1.5% as critical process variables. The quadratic impact of pH, temperature and sodium chloride significantly contributed for the production of cellulase under solid-state conditions from maize stover mediated by S. enissocaesilis DQ026641.
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来源期刊
Journal of Applied Biology and Biotechnology
Journal of Applied Biology and Biotechnology Agricultural and Biological Sciences-Food Science
CiteScore
1.80
自引率
0.00%
发文量
181
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