1 |
DREVETS D A , BRONZE M S . Listeria monocytogenes: epidemiology, human disease, and mechanisms of brain invasion[J]. FEMS Immunol Med Microbiol, 2008, 53 (2): 151- 165.
doi: 10.1111/j.1574-695X.2008.00404.x
|
2 |
CHLEBICZ A , S'LIZ·EWSKA K . Campylobacteriosis, salmonellosis, yersiniosis, and listeriosis as zoonotic foodborne diseases: A review[J]. Int J Environ Res Public Health, 2018, 15 (5): 863.
doi: 10.3390/ijerph15050863
|
3 |
孙照琨, 吴璇, 陈蕊, 等. 李斯特菌病既往中国文献报告病例分析[J]. 中国微生态学杂志, 2016, 28 (11): 1323- 1326.
|
|
SUN Z K , WU X , CHEN R , et al. Previous cases of Listeria disease reported in China[J]. Chinese Journal of Microecology, 2016, 28 (11): 1323- 1326.
|
4 |
马丽丽, 吴跃伟, 陈晓晖, 等. 非洲猪瘟研究领域专利布局和竞争态势分析[J]. 病毒学报, 2020, 36 (5): 885- 896.
|
|
MA L L , WU Y W , CHEN X W , et al. Analysis of patent layout and competitive situation in the field of African swine fever research[J]. Chinese Journal of Virology, 2020, 36 (5): 885- 896.
|
5 |
张旭. 单核细胞增生李斯特菌(Listeria monocytogenes)分型及检测新方法探究[D]. 广州: 华南理工大学, 2021.
|
|
ZHANG X. Research on new methods for typing and detection of Listeria monocytogenes[D]. Guangzhou: South China University of Technology, 2021. (in Chinese)
|
6 |
李静, 张蕾, 董春娜, 等. 我国非洲猪瘟病毒检测技术专利分析[J]. 病毒学报, 2023, 39 (1): 222- 230.
|
|
LI J , ZHANG L , DONG C N , et al. Analysis of African swine fever virus detection technology patents in China[J]. Chinese Journal of Virology, 2023, 39 (1): 222- 230.
|
7 |
李山, 徐玲笑, 方芳. 基因芯片技术在食品检测中的应用研究进展[J]. 现代食品, 2023, 29 (20): 73- 75.
|
|
LI S , XU L X , FANG F . Research progress in the application of gene chip technology in food detection[J]. Modern Food, 2023, 29 (20): 73- 75.
|
8 |
王佳. 动物性食品中硝基呋喃类代谢物残留的定量免疫层析技术研究[D]. 重庆: 西南大学, 2019.
|
|
WANG J. Immunochromatographic assays for quantitative determination of nitrofuran metabolite residues in animal-derived food[D]. Chongqing: Southwest University, 2019. (in Chinese)
|
9 |
DOUMITH M , CAZALET C , SIMOES N , et al. New aspects regarding evolution and virulence of Listeria monocytogenes revealed by comparative genomics and DNA arrays[J]. Infect Immun, 2004, 72 (2): 1072- 1083.
doi: 10.1128/IAI.72.2.1072-1083.2004
|
10 |
康立超, 钱晶, 杜冬冬, 等. 新疆食源性单增李斯特菌MLST分型及耐药性分析[J]. 食品安全质量检测学报, 2021, 12 (15): 6255- 6261.
|
|
KANG L C , QIAN J , DU D D , et al. Multilocus sequence typing and antibiotic resistance of food-borne Listeria monocytogenes in Xinjiang[J]. Journal of Food Safety & Quality, 2021, 12 (15): 6255- 6261.
|
11 |
RONHOLM J , VAN FAASSEN H , MACKENZIE R , et al. Monoclonal antibodies recognizing the surface autolysin IspC of Listeria monocytogenes serotype 4b: epitope localization, kinetic characterization, and cross-reaction studies[J]. PLoS One, 2013, 8 (2): e55098.
doi: 10.1371/journal.pone.0055098
|
12 |
姚浩. 血清型4h单核细胞增生李斯特菌半乳糖基化壁磷壁酸结构与功能研究[D]. 扬州: 扬州大学, 2023.
|
|
YAO H. Structure and function of galactosylated wall teichoic acids in serotype 4h Listeria monocytogenes[D]. Yangzhou: Yangzhou University, 2023. (in Chinese)
|
13 |
徐尧, 李果, 张琴, 等. 猪肉产业链中单核细胞增生李斯特菌的流行病学研究进展[J]. 中国人兽共患病学报, 2022, 38 (9): 839- 842.
|
|
XU Y , LI G , ZHANG Q , et al. Epidemiology of Listeria monocytogenes in the pork industry supply chain[J]. Chinese Journal of Zoonoses, 2022, 38 (9): 839- 842.
|
14 |
梁馨文, 刘振杰, 张菊梅, 等. 高效噬菌体防控食品源单增李斯特菌的研究进展[J]. 现代食品科技, 2024, 40 (1): 304- 311.
|
|
LIANG X W , LIU Z J , ZHANG J M , et al. Research advances in the efficient prevention and control of foodborne Listeria monocytogenes by bacteriophages[J]. Modern Food Science and Technology, 2024, 40 (1): 304- 311.
|