嗜热菌
蛋白酶
细菌
水解
突变
酶
食品科学
拉伤
突变体
生物
生物化学
化学
微生物学
基因
遗传学
解剖
作者
Zhifang Ning,Caiyun Ma,Weizhang Zhong,Chun Li,Jianrui Niu,Changwei Wang,Zhaoyang Wang
标识
DOI:10.1016/j.biortech.2024.130330
摘要
Excess sludge (ES), a resource-rich organic waste, can be solubilized by thermophilic enzymes to extract proteins for sludge reduction and resources recovery. To solve the problems of low hydrolysis effect of ES and low enzyme producing ability of wild thermophilic bacteria, ultraviolet and diethyl sulfate (UV-DES) were adopted to mutate thermophilic bacteria in this study. Mutation sites were detected and annotated by whole genome sequencing analysis. The results showed that UV-DES mutagenesis could effectively improve enzyme-producing capacity of thermophilic bacteria and promote the hydrolysis of ES. The protease activity of the mutant strain KT16 was 46.7 % higher than that of the original strain DC8. The protein extraction rate with enzyme produced by KT16 reached 83.3 %. The total content of proteins recycled through KT16 enzyme solution was 3539.6 mg·L-1, 18.4 % higher than that of DC8. This work provided a theoretical idea and technical guidance for the protein recovery from ES.
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