Zhang Lijie, Bao Yida, Chen Haifeng, Huang Jiaquan, Xu Yan
Key Laboratory of Industrial Biotechnology of Ministry of Education, State Key Laboratory of Food Science and Technology, School of Biotechnology, Jiangnan University, Wuxi 214100, China.
Sichuan Pixian Douban Company Limited, Chengdu 611730, China.
Foods. 2020 Jul 14;9(7):930. doi: 10.3390/foods9070930.
Traditional fermented bean pastes are indispensable seasonings in many East Asian countries. They are produced via hypertonic solutions by spontaneous fermentation. Functional, unknown microbiota carry great risks for food safety and stable quality. Thus, analysis and subsequent utilization of functional microbiota will be a good strategy to resolve these problems. During bean fermentation, the microbial functions were divided into two stages, including first stage-raw material (polypeptide) degradation and second stage-amino acid catabolism. In this study, we aimed to analyze the functional microbiota of first stage. Omics-studies, including high-throughput sequencing, correlation analysis and extracellular proteome, were used to generate candidate functional microbes for polypeptide degradation in this study. Then, we cultured the candidate functional microbes. After the batch fermentation and enzymatic analysis, we found three strains secreted peptidase and resulted amino acid accumulation, involving , and . Thus, , and conducted the functional microbiota for polypeptide degrading during hypertonic moromi fermentation. This study supplies a strategy for functional microbiota analysis. In addition, this is the first report that can secrete proteome and produce amino acids from polypeptide.
传统发酵豆酱是许多东亚国家不可或缺的调味品。它们是通过高渗溶液自然发酵生产的。功能性未知微生物群对食品安全和稳定质量构成巨大风险。因此,分析并随后利用功能性微生物群将是解决这些问题的一个好策略。在豆类发酵过程中,微生物功能分为两个阶段,包括第一阶段——原料(多肽)降解和第二阶段——氨基酸分解代谢。在本研究中,我们旨在分析第一阶段的功能性微生物群。本研究采用了包括高通量测序、相关性分析和细胞外蛋白质组学在内的组学研究方法,以生成用于多肽降解的候选功能性微生物。然后,我们培养了候选功能性微生物。经过分批发酵和酶分析,我们发现三株菌株分泌肽酶并导致氨基酸积累,涉及[具体菌株1]、[具体菌株2]和[具体菌株3]。因此,[具体菌株1]、[具体菌株2]和[具体菌株3]构成了高渗酱醪发酵过程中多肽降解的功能性微生物群。本研究提供了一种功能性微生物群分析策略。此外,这是关于[具体菌株]能够分泌蛋白质组并从多肽产生氨基酸的首次报道。