| [1]蔡粮预,苗玉蝶,曹亚鑫,等.牛源肺炎克雷伯菌的分离鉴定
及主要毒力因子检测[J].现代畜牧科技,2024(11):25-
27.
[2]赵飞字。猪源肺炎克雷伯菌毒力和时药分析及噬菌体的分离鉴
定[D].郑州:河南农业大学,2025.
[3]陈强,杨靖卿,仇嘉豪,等.猪源肺炎克雷伯菌时药性及毒力
分析[J.吉林畜牧兽医,2024,45(12):4-6.
[4]陈鑫,梁樊鑫,郝斌,等。兔源肺炎克雷伯菌的分离鉴定与生
物学特性分析[J].家畜生态学报,2025,46(06):85-91.
[5]李佳华,刘海月,李欣南,等。狐源肺炎克雷伯菌辽宁分离株
的鉴定及其致病性与时药性分析[J].现代畜牧兽医,2025
(02):1-5.
[6]廖慧群,赵美,曾国辉,等。林龄源肺炎克雷伯菌耐药性及毒
力基因分析[J].中国畜牧兽医,2025,52(01):411-421.
[7]Martin G,Tyson G H,Guag J,et al.Genomic snapshot of Kleb-
siella spp.isolates from clinically ill animals reveal diverse lineages
with limited relatedness to human isolates [J].BMC Veterinary Re-
search,2025,21(1):458.
[8]龙宝琴,王辉湖,余林金,等。2株鹅鹑源肺炎克雷伯菌的分
离鉴定及生物学特性分析[J].中国畜牧兽医,2025,52
(05):2364-2378.
[9]黄涛,刘金凤,林仲寅,等。一例鹦鹉肺炎克雷伯菌感染的诊
断报告[J].家禽科学,2025,47(02):37-42,126.
[10]Zhang Y,Wang Q,Yin Y,et al.Epidemiology of Carbapenem-
Resistant Enterobacteriaceae Infections:Report from the China
CRE Network [J].Antimicrobial Agents and Chemotherapy,
2018,62(2).
[11]张嘉文,吴森泉,周晓玲,等.探索MALDI--TOF MS在肺炎
克雷伯菌同源性分析中的应用[J].医学理论与实践,2023,
36(02):302-305.
[12]贺文芳,周柯,周磊,等.MST和P℉GE在耐碳青霉烯类肺
炎克雷伯菌医院感染监测中的应用[J].中国感染控制杂志,
2020,19(06):533-538.[13]毕菁,陈雯杰,田靓,等.上海市医疗机构ST11型耐碳青霉
烯类肺炎克雷伯菌分子流行病学特征与高毒力进化研究[]·
中国感染控制杂志,2025,24(08):1075-1082.
[14]施瑜,王震,杨奇,等。高毒力肺炎克雷伯菌的毒力基因研
究[J].中国现代药物应用,2025,19(13):177-180.
[15]曹颖仪,戴立廷,赖艳榕,等.耐碳青霉烯类肺炎克雷伯菌特征及致病机制研究[J].中华肺部疾病杂志(电子版),
2025,18(03):423-428.
[16]Chen L,Deng M,Wang J,et al.Antibiotic resistance and epi-
demiological characteristics of polymyxin-resistant Klebsiella pneu-
moniae [J].Joumal of Central South University Medical Sciences,
2024,49(5):737-747.
[17]Liu C,Dong N,Chan E W C,et al.Molecular epidemiology of
carbapenem-resistant Klebsiella pneumoniae in China,2016-20
[J].The Lancet Infectious Diseases,2022,22 (2):167-168.
[18]Feng Y,Liu L,Menally A,et al.Coexistence of three blaKPC-
2 genes on an IncF/IncR plasmid in ST11 Klebsiella pneumoniae
[J].Joumal of Global Antimicrobial Resistance,2019,17:90-
93.
19]Zhang X W,Huang X Y,Zhou Z Y,et al.Genetic framework
and evolutionary dynamics of mer-positive Klebsiella pneumoniae
from 2000 to 2023 [J].International Journal of Antimicrobial A-
gents,2025,66(3):107533.
[20]陈俊瑶,黄金晶,江秀娟,等。耐碳青霉烯肺炎克雷伯菌时
药基因及毒力基因分析研究[J].中国热带医学,2022,22
(07):672-677.
[21]唐依莲,张晨,蒲翔.中国ST11时碳青霉烯类肺炎克雷伯菌
耐药分子机制研究进展[J].检验医学与临床,2023,20
(11):1606-1610.
[22]黄丽燕,陈定强,唐海玲,等。肺炎克雷伯菌质粒pMP26DQ49
的高通量测序分析[J].广东医学,2018,39(01):71-75.
[23]宁雪莹,王琳,孙晔晖,等。动物源性时药菌和时药基因生
物消减控制研究进展[J].中国动物检疫,2025,42(08):
94-100,14.
[24]Xing J,Zhang H,Zheng L,et al.Phage therapy against Kleb-
siella pneumoniae:An evolving perspective [J].Biotechnology
Advances,2025,84:108689.
[25]Xing J,Han R,Zhao J,et al.Revisiting therapeutic options a-
gainst resistant klebsiella pneumoniae infection:Phage therapy is
key [J].Microbiological Research,2025,293:128083.
[26]孙娅红,杨晓钰,郑瑞。噬菌体治疗碳青霉烯类时药肺炎克
雷伯菌感染研究进展与挑战[J].昆明医科大学学报,2025,
46(06):163-170.
[27]Naeem M,Alkhodairy H F,Ashraf I,et al.CRISPR/Cas Sys-
tem Toward the Development of Next-Generation Recombinant
Vaccines:Current Scenario and Future Prospects [J].Arabian
Joumal for Science and Engineering,2023,48 (1):1-11.
[28]Tobuse A J,Ang C W,Yeong K Y.Modem vaccine development
via reverse vaccinology to combat antimicrobial resistance [J].Life
Sciences,2022,302:120660. |