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International Journal of Biological Macromolecules|January 19, 2025
2,3-Butanediol dehydrogenase is more efficient than acetoin reductase at metabolizing reserve carbon to improve carbon cycling pathways in Lactococcus lactis N8Xian Xu, Wanjin Qiao, Yujie Dong, et al.Microbial Cell Factories|November 16, 2019
Restructured Lactococcus lactis strains with emergent properties constructed by a novel highly efficient screening systemFulu Liu, Yating Zhang, Wanjin Qiao, et al.Microorganisms|April 27, 2024
A Point Mutation in Cassette Relieves the Repression Regulation of CcpA Resulting in an Increase in the Degradation of 2,3-Butanediol in <i>Lactococcus lactis</i>Xian Xu, Fulu Liu, Wanjin Qiao, et al.Carbohydrate Polymers|November 4, 2020
Production of nisin-containing bacterial cellulose nanomaterials with antimicrobial properties through co-culturing Enterobacter sp. FY-07 and Lactococcus lactis N8Ge Gao, Huiqiang Fan, Yibo Zhang, et al.International Journal of Biological Macromolecules|January 15, 2022
A novel co-cultivation strategy to generate low-crystallinity bacterial cellulose and increase nisin yieldsWanjin Qiao, Yu Qiao, Ge Gao, et al.Microbial Cell Factories|December 10, 2020
Engineering Lactococcus lactis as a multi-stress tolerant biosynthetic chassis by deleting the prophage-related fragmentWanjin Qiao, Yu Qiao, Fulu Liu, et al.Current Research in Microbial Sciences|July 21, 2025
The <i>irpT</i> gene influences the multiple stresses tolerance by affecting cytochrome c in <i>Lactococcus lactis</i> N8Dingyi Guo, Chunhui Jia, Xiaoting Xu, et al.Microorganisms|January 21, 2022
Genomic Features and Construction of Streamlined Genome Chassis of Nisin Z Producer <i>Lactococcus lactis</i> N8Wanjin Qiao, Fulu Liu, Xing Wan, et al.Frontiers in Microbiology|April 10, 2018
Co-expression of Nisin Z and Leucocin C as a Basis for Effective Protection Against <i>Listeria monocytogenes</i> in Pasteurized MilkYuxin Fu, Dongdong Mu, Wanjin Qiao, et al.International Journal of Biological Macromolecules|June 10, 2024
Production of bacterial cellulose-based peptidopolysaccharide BC-L with anti-listerial properties using a co-cultivation strategyWanjin Qiao, Chunhui Jia, Jiyuan Yang, et al.Pageof 2