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通过多菌株发酵微生物转化水稻秸秆生产蛋白质。

Protein Production Through Microbial Conversion of Rice Straw by Multi-Strain Fermentation.

机构信息

Institute of Life Sciences, Jiangsu University, Zhenjiang, 212000, P. R. China.

Translational Research Institute, Henan Provincial People's Hospital, Zhengzhou, 450000, P. R. China.

出版信息

Appl Biochem Biotechnol. 2019 Jan;187(1):253-265. doi: 10.1007/s12010-018-2792-5. Epub 2018 Jun 20.

Abstract

Multi-strain mixed fermentation can provide a relatively complete lignocellulosic enzyme system compared with single-strain fermentation. This study was firstly to screen strains which have a strong ability to hydrolyse rice straw (RS) enzymatically and enrich true protein (TP). Then, the conditions in the process of SSF, including the optimum inoculum size of mixed strains, inoculation ratio, and different inoculation time of N. crassa 14-8, were optimized. The experimental results showed that the highest TP content could be obtained by using N. crassa 14-8, C. utilis, and P. chrysosporium as mixed strains, and 5 mM Mn and 50 mM veratryl alcohol were used as inducers of lignin peroxidase (LiP) to improve the efficiency of enzymatic hydrolysis. When N. crassa 14-8 was inoculated 1 day later than P. chrysosporium, the total inoculum size was 10%, and the optimum ratio of N. crassa 14-8 to P. chrysosporium was 1:2, the maximum TP yield (8.89%) was obtained, with 123.37% of its increase rate. This work proposed a technique with potential application in large-scale feedstuff protein conversion.

摘要

多菌株混合发酵与单菌株发酵相比,可以提供相对完整的木质纤维素酶系统。本研究首先筛选出具有较强酶解水稻秸秆(RS)能力和富集真蛋白(TP)的菌株,然后优化固态发酵(SSF)过程中的条件,包括混合菌株的最佳接种量、接种比例和不同接种时间的 N. crassa 14-8。实验结果表明,采用 N. crassa 14-8、C. utilis 和 P. chrysosporium 作为混合菌株,使用 5 mM Mn 和 50 mM 藜芦醇作为木质素过氧化物酶(LiP)的诱导剂,可获得最高的 TP 含量,提高酶解效率。当 N. crassa 14-8 比 P. chrysosporium 晚接种 1 天时,总接种量为 10%,N. crassa 14-8 与 P. chrysosporium 的最佳比例为 1:2,可获得最大的 TP 产量(8.89%),增加率为 123.37%。这项工作提出了一种具有潜在应用价值的大规模饲料蛋白转化技术。

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