食品科学 ›› 2026, Vol. 47 ›› Issue (10): 127-138.doi: 10.7506/spkx1002-6630-20260110-084

• 生物工程 • 上一篇    下一篇

窖泥优势己酸菌株Caproicibacterium lactatifermentans XB2的分离、代谢特征和比较基因组分析

甄莉,徐康杰,崔磊,崔战友,刘艳,王秀本,常强,李俊增,任一鸣,王越,张会敏   

  1. (1.安徽工程大学生物与食品工程学院,安徽省工业微生物分子育种工程实验室,安徽 芜湖 241000;2.安徽文王酿酒股份有限公司,安徽 阜阳 236400;3.安徽省金裕皖酒业有限公司,安徽 阜阳 236500)
  • 出版日期:2026-05-25 发布日期:2026-06-10
  • 基金资助:
    国家自然科学基金青年科学基金项目(32302031); 安徽省工业微生物分子育种工程实验室开放基金项目(ELMB-05;ELMB-07)

Isolation, Metabolic Characteristics and Comparative Genomic Analysis of the Dominant Caproic Acid-Producing Bacterium Caproicibacterium lactatifermentans XB2 from Pit Mud of Baijiu

ZHEN Li, XU Kangjie, CUI Lei, CUI Zhanyou, LIU Yan, WANG Xiuben, CHANG Qiang, LI Junzeng, REN Yiming, WANG Yue, ZHANG Huimin   

  1. (1. Anhui Engineering Laboratory for Industrial Microbiology Molecular Breeding, School of Biology and Food Engineering, Anhui Polytechnic University, Wuhu 241000, China; 2. Anhui Wenwang Distillery Co., Ltd., Fuyang 236400, China;3. Anhui Jinyuwan Distillery Co., Ltd., Fuyang 236500, China)
  • Online:2026-05-25 Published:2026-06-10

摘要: 本研究通过富集和传统分离厌氧菌株技术从窖泥分离获得一株优势己酸生成菌XB2,经16S rRNA和全基因组测序鉴定为Caproicibacterium lactatifermentans。比较基因组显示,XB2除携带完整的β-氧化逆反应(reverse β-oxidation,RBO)通路外,首次作为Caproicibacterium属菌株同时被发现具有脂肪酸生物合成(fatty acid biosynthesis,FAB)及L-苏氨酸降解型丙酸通路的全部关键酶基因。透射电镜观察发现,菌体呈椭圆梭状,显著区别于亲缘菌株的短棒形态。发酵结果表明,XB2代谢呈碳源依赖性:以葡萄糖为底物时微量合成己酸(0.23 g/L),以乳酸为底物时丁酸质量浓度增加0.59 g/L;当电子受体受限时,合成丙酸(0.21 g/L),提示L-苏氨酸降解途径被激活。本研究揭示了C. lactatifermentans的形态与代谢种内多样性,突破了传统对己酸菌单一RBO代谢通路合成己酸的认知,可为理解窖池微生物的功能冗余与适应性提供新视角,并为通过调控菌群代谢以优化白酒风味品质奠定理论基础。

关键词: 浓香型白酒;Caproicibacterium lactatifermentans XB2;β-氧化逆反应通路;脂肪酸生物合成代谢通路;丙酸;L-苏氨酸降解途径

Abstract: In this study, a dominant caproic acid-producing strain (CPB), designated XB2, was isolated from pit mud of baijiu using enrichment and traditional anaerobic isolation techniques. It was identified as Caproicibacterium lactatifermentans based on 16S rRNA gene sequencing and whole-genome sequencing. Comparative genomic analysis revealed that in addition to possessing a complete reverse β-oxidation (RBO) pathway, strain XB2 is the first reported Caproicibacterium strain carrying the full complement of key enzyme genes in both the fatty acid biosynthesis (FAB) pathway and the L-threonine degradation pathway for propionate synthesis. Transmission electron microscopy (TEM) revealed that strain XB2 exhibited an elliptical to fusiform morphology, differing significantly from the short-rod shape of its phylogenetic relatives. Fermentation results indicated carbon source-dependent metabolism: when glucose was used as the substrate, caproate was synthesized at a low concentration (0.23 g/L), whereas using lactate as the substrate increased butyrate production by 0.59 g/L. Under conditions with limited electron acceptors, propionate was produced at 0.21 g/L, suggesting the activation of the L-threonine pathway. This study elucidates the morphology and intraspecific metabolic diversity of C. lactatifermentans. It challenges the conventional view that CPBs rely solely on the RBO pathway for caproic acid synthesis, providing a new perspective for understanding functional redundancy and adaptability of microbial communities in pit mud of baijiu. Furthermore, it establishes a theoretical foundation for optimizing baijiu flavor profiles through the precise regulation of microbial metabolism.

Key words: nongxiangxing baijiu; Caproicibacterium lactatifermentans XB2; reverse β-oxidation pathway; fatty acid biosynthesis pathway; propionic acid; L-threonine degradation pathway

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