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Transcriptomic analysis on the formation of the viable putative non-culturable state of beer-spoilage Lactobacillus acetotolerans

机译:转录组分析啤酒腐败乳酸酸碱酸碱的可行推定不培养状态的形成

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Lactic acid bacteria (LAB) are the most common beer-spoilage bacteria regardless of beer type, and thus pose significant problems for the brewery industry. The aim of this study was to investigate the genetic mechanisms involved in the ability of the hard-to-culture beer-spoilage bacterium Lactobacillus acetotolerans to enter into the viable putative non-culturable (VPNC) state. A genome-wide transcriptional analysis of beer-spoilage L. acetotolerans strains BM-LA14526, BM-LA14527, and BM-LA14528 under normal, mid-term and VPNC states were performed using RNA-sequencing (RNA-seq) and further bioinformatics analyses. GO function, COG category, and KEGG pathway enrichment analysis were conducted to investigate functional and related metabolic pathways of the differentially expressed genes. Functional and pathway enrichment analysis indicated that heightened stress response and reduction in genes associated with transport, metabolic process, and enzyme activity might play important roles in the formation of the VPNC state. This is the first transcriptomic analysis on the formation of the VPNC state of beer spoilage L. acetotolerans.
机译:乳酸菌(实验室)是最常见的啤酒腐败细菌,无论啤酒类型如何,因此对啤酒厂行业构成重大问题。本研究的目的是研究涉及难以培养的啤酒腐败细菌乳酸杆菌的能力的遗传机制进入可行推定的非培养(VPNC)状态。使用RNA测序(RNA-SEQ)进行正常,中期和VPNC状态的啤酒腐败L.丙酮蛋白酶菌株BM-LA14526,BM-LA14527和BM-LA14528的基因组转录分析。进一步的生物信息学分析。进行GO功能,COG类别和KEGG途径富集分析,以研究差异表达基因的功能性和相关代谢途径。功能和途径富集分析表明,与运输,代谢过程和酶活性相关的基因的应力响应和降低可能在VPNC状态的形成中起重要作用。这是第一个关于啤酒腐败毒性丙酮醛植物的VPNC状态的转录组分析。

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