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用于骨水泥发酵的嗜热链球菌 CICC 20372 的安全性评估、全基因组序列和代谢组学分析。

Safety assessment, whole genome sequence, and metabolome analysis of Streptococcus thermophilus CICC 20372 for bone cement fermentation.

机构信息

Inner Mongolia Peptide (Mengtai) Biological Engineering Co., Ltd, Hohhot, 011500, China.

CAS Key Laboratory of Microbial Physiological and Metabolic Engineering, State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

Arch Microbiol. 2023 Dec 14;206(1):21. doi: 10.1007/s00203-023-03737-z.

Abstract

Bone is a kind of meat processing by-product with high nutritional value but low in calorie, which is a typical food in China and parts of East Asian countries. Microbial fermentation by lactic acid bacteria showed remarkable advantages to increase the absorption of nutrients from bone cement by human body. Streptococcus thermophilus CICC 20372 is proven to be a good starter for bone cement fermentation. No genes encoding virulence traits or virulence factors were found in the genome of S. thermophilus CICC 20372 by a thorough genomic analysis. Its notable absence of antibiotic resistance further solidifies the safety. Furthermore, the genomic analysis identified four types of gene clusters responsible for the synthesis of antimicrobial metabolites. A comparative metabolomic analysis was performed by cultivating the strain in bone cement at 37 °C for 72 h, with the culture in de Man, Rogosa, and Sharpe (MRS) medium as control. Metabolome analysis results highlighted the upregulation of pathways involved in 2-oxocarboxylic acid metabolism, ATP-binding cassette (ABC) transporters, amino acid synthesis, and nucleotide metabolism during bone cement fermentation. S. thermophilus CICC 20372 produces several metabolites with health-promoting function during bone cement fermentation, including indole-3-lactic acid, which is demonstrated ameliorative effects on intestinal inflammation, tumor growth, and gut dysbiosis. In addition, lots of nucleotide and organic acids were accumulated at higher levels, which enriched the fermented bone cement with a variety of nutrients. Collectively, these features endow S. thermophilus CICC 20372 a great potential strain for bone food processing.

摘要

骨头是一种具有高营养价值、低热量的肉类加工副产品,是中国和部分东亚国家的一种典型食品。乳酸菌的微生物发酵显示出显著的优势,可以增加人体对骨水泥中营养物质的吸收。嗜热链球菌 CICC 20372 已被证明是骨水泥发酵的良好起始菌。通过彻底的基因组分析,在嗜热链球菌 CICC 20372 的基因组中未发现编码毒力特征或毒力因子的基因。其显著缺乏抗生素抗性进一步巩固了安全性。此外,基因组分析确定了四种负责合成抗菌代谢物的基因簇。通过在 37°C 下将菌株在骨水泥中培养 72 小时,与在 de Man、Rogosa 和 Sharpe (MRS) 培养基中的培养进行比较代谢组学分析。代谢组学分析结果突出了与 2-氧羧酸代谢、ATP 结合盒 (ABC) 转运蛋白、氨基酸合成和核苷酸代谢相关的途径在骨水泥发酵过程中的上调。在骨水泥发酵过程中,嗜热链球菌 CICC 20372 产生了几种具有促进健康功能的代谢物,包括吲哚-3-乳酸,它对肠道炎症、肿瘤生长和肠道菌群失调具有改善作用。此外,大量核苷酸和有机酸积累在更高水平,使发酵骨水泥富含多种营养物质。总的来说,这些特征赋予了嗜热链球菌 CICC 20372 一种用于骨食品加工的巨大潜力菌株。

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