China Animal Husbandry & Veterinary Medicine ›› 2019, Vol. 46 ›› Issue (11): 3378-3386.doi: 10.16431/j.cnki.1671-7236.2019.11.028
• Preventive Veterinary Medicine • Previous Articles Next Articles
ZHAO Gaoqian1, WANG Suying1, LI Guangshan2, ZHAO Qingbin3
Received:
2019-06-24
Online:
2019-11-20
Published:
2019-11-25
CLC Number:
ZHAO Gaoqian, WANG Suying, LI Guangshan, ZHAO Qingbin. Research Progress on Infection Epidemic Patterns Among Major Dairy Cow Mastitis Pathogenic Bacteria[J]. China Animal Husbandry & Veterinary Medicine, 2019, 46(11): 3378-3386.
[1] ROLLIN E,DHUYVETTER K C,OVERTON M W.The cost of clinical mastitis in the first 30 days of lactation:An economic modeling tool[J]. Preventive Veterinary Medicine,2015,122(3):257-264. [2] 王丹,杨峰,李新圃,等.奶牛乳房炎病原菌诊断技术研究进展[J].中国畜牧兽医,2017,44(6):1811-1871. WANG D,YANG F,LI X P,et al.Research progress on diagnosis technology of dairy cow mastitis pathogens[J]. China Animal Husbandry & Veterinary Medicine,2017,44(6):1811-1871.(in Chinese) [3] 郭梦尧,王洪海,王国卿,等.奶牛乳房炎的病理机制及中药防治研究进展[J].动物医学进展,2010,31(10):92-95. GUO M Y,WANG H H,WANG G Q,et al.Pathogenesis of mastitis in dairy cows and progress on prevention and treatment by Chinese herbal medicine[J].Progress in Veterinary Medicine,2010,31(10):92-95.(in Chinese) [4] GARZONI C,KELLEY W L.Staphylococcus aureus:New evidence for intracellular persistence[J].Trends in Microbiology,2009,17(2):59-65. [5] BOBBO T,RUEGG P L,STOCCO G,et al.Associations between pathogen-specific cases of subclinical mastitis and milk yield,quality,protein composition,and cheese-making traits in dairy cows[J].Journal of Dairy Science,2017,100(6):4868-4883. [6] TAPONEN S,LISKI E,HEIKKIL A M,et al.Factors associated with intramammary infection in dairy cows caused by coagulase-negative staphylococci,Staphylococcus aureus,Streptococcus uberis,Streptococcus dysgalactiae,Corynebacterium bovis,or Escherichia coli[J].Journal of Dairy Science,2017,100(1):493. [7] KUEHN J S,GORDEN P J,DANIEL M,et al.Bacterial community profiling of milk samples as a means to understand culture-negative bovine clinical mastitis[J]. PLoS One,2013,8(4):e61959. [8] RAINARD P.Mammary microbiota of dairy ruminants:Fact or fiction?[J].Veterinary Research,2017,48(1):25. [9] KLAAS I C,ZADOKS R N.An update on environmental mastitis:Challenging perceptions[J].Transboundary and Emerging Diseases,2018,65(8):166-185. [10] SCHUKKEN Y H,RUBEN N,TIKOFSKY L L,et al.CNS mastitis:Nothing to worry about?[J].Veterinary Microbiology,2009,134(1-2):9-14. [11] VANDERHAEGHEN W,PIEPERS S,LEROY F,et al.Invited review:Effect,persistence,and virulence of coagulase-negative Staphylococcus species associated with ruminant udder health[J].Journal of Dairy Science,2014,97(9):5275-5293. [12] PIEPERS S,SCHUKKEN Y H,PASSCHYN P,et al.The effect of intramammary infection with coagulase-negative staphylococci in early lactating heifers on milk yield throughout first lactation revisited[J]. Journal of Dairy Science,2013,96(8):5095-5105. [13] REYHER K K,DOHOO I R,SCHOLL D T,et al.Evaluation of minor pathogen intramammary infection,susceptibility parameters,and somatic cell counts on the development of new intramammary infections with major mastitis pathogens[J].Journal of Dairy Science,2012,95(7):3766-3780. [14] RIEKERINK R G M O,BARKEMA H W,KELTON D F,et al.Incidence rate of clinical mastitis on Canadian dairy farms[J].Journal of Dairy Science,2008,91(4):1366-1377. [15] GAO J,BARKEMA H W,ZHANG L,et al.Incidence of clinical mastitis and distribution of pathogens on large Chinese dairy farms[J].Journal of Dairy Science,2017,100(6):4797-4806. [16] 刘钢.奶牛乳房炎源性浅绿气球菌的表型、基因型和致病机制研究[D].北京:中国农业大学,2017. LIU G.Phenotyping,genotyping and pathogenic mechanism of Aerococciis viridans from bovine mastitis[D].Beijing:China Agricultural University,2017.(in Chinese) [17] ALMEIDA A,CINTHIA A B,SAUVAGE E,et al.Persistence of a dominant bovine lineage of group B Streptococcus reveals genomic signatures of host adaptation[J].Environmental Microbiology,2016,18(11):4216-4229. [18] JØRGENSEN H J,NORDSTOGA A B,SVILAND S,et al.Streptococcus agalactiae in the environment of bovine dairy herds-rewriting the textbooks?[J].Veterinary Microbiology,2016,184:64-72. [19] 张俊杰.奶牛乳房炎用药指导[J].中国乳业,2017,129(12):48-53. ZHANG J J.Dairy cow mastitis medication guide[J].China Dairy,2017,129(12):48-53.(in Chinese) [20] 庞茂达,孙利厂,何涛,等.江苏部分地区牛源无乳链球菌流行病学研究[J].扬州大学学报:农业与生命科学版,2017,38(4):25-29. PANG M D,SUN L C,HE T,et al.An epidemiology study of bovine Streptococcus agalactiae in Jiangsu[J].Journal of Yangzhou University (Agricultural and Life Science Edition),2017,38(4):25-29.(in Chinese) [21] TIAGO T,FRANCISCO D S F A,BRYAN H M,et al.Molecular characterization and antimicrobial susceptibility pattern of Streptococcus agalactiae isolated from clinical mastitis in dairy cattle[J].PLoS One,2018,13(6):e0199561. [22] 杜琳,郝永清.内蒙古无乳链球菌耐药性及四环素耐药基因检测[J].华中农业大学学报,2016,35(1):114-119. DU L,HAO Y Q.Drug resistance and tetracycline resistance gene identification of Streptococcus agalactiae isolates from bovine in Inner Mongolia[J].Journal of Huazhong Agricultural University,2016,35(1):114-119.(in Chinese) [23] KALMUS P,SIMOJOKI H,ORRO T,et al.Efficacy of 5-day parenteral versus intramammary benzyl penicillin for treatment of clinical mastitis caused by Gram-positive bacteria susceptible to penicillin in vitro[J]. Journal of Dairy Science,2014,97(4):2155-2164. [24] FRANCOZ D,WELLEMANS V,DUPRÉ J P,et al.Invited review:A systematic review and qualitative analysis of treatments other than conventional antimicrobials for clinical mastitis in dairy cows[J].Journal of Dairy Science,2017,100(10):7751-7770. [25] CRAVEN N.Efficacy and financial value of antibiotic treatment of bovine clinical mastitis during lactation——A review[J].British Veterinary Journal,1987,143(5):410-422. [26] TIMONE A A E,KATHOLM J,PETERSEN A,et al.Elimination of selected mastitis pathogens during the dry period[J].Journal of Dairy Science,2018,101(10):9332-9338. [27] LIU G,YIN J,BARKEMA H W,et al.Development of a single-dose recombinant CAMP factor entrapping poly (lactide-co-glycolide) microspheres-based vaccine against Streptococcus agalactiae[J].Vaccine,2017,35(9):1246-1253. [28] 张立梅.奶牛乳房炎性金葡菌毒力基因和耐药性及其与SCVs致病力差异[D].北京:中国农业大学,2018. ZHANG L M.Virulence and resistance characteristic of Staphylococcus aureus isolated from bovine mastitis and its athogenic difference with SCVs[D].Beijing:China Agricultural University,2018.(in Chinese) [29] KEEFE G.Update on control of Staphylococcus aureus and Streptococcus agalactiae for management of mastitis[J].Veterinary Clinics of North America:Food Animal Practice,2012,28(2):203-216. [30] HUMMERJOHANN J,NASKOVA J,BAUMGARTNER A,et al.Enterotoxin-producing Staphylococcus aureus genotype B as a major contaminant in Swiss raw milk cheese[J].Journal of Dairy Science,2014,97(3):1305-1312. [31] PETERSSON-WOLFE C S,MULLARKY I K,JONES G M.Staphylococcus aureus mastitis:Cause,detection,and control[J].Virginia Cooperative Extension Publication,2010,404-229:1-7. [32] ZHANG L,LI Y,BAO H,et al.Population structure and antimicrobial profile of Staphylococcus aureus strains associated with bovine mastitis in China[J].Microbial Pathogenesis,2016,97:103-109. [33] STALDER U,STEPHAN R,CORTI S,et al.Short communication:Staphylococcus aureus isolated from colostrum of dairy heifers represent a closely related group exhibiting highly homogeneous genomic and antimicrobial resistance features[J].Journal of Dairy Science,2014,97(8):4997-5000. [34] SHI D,HAO Y,ZHANG A,et al.Antimicrobial resistance of Staphylococcus aureus isolated from bovine mastitis in China[J]. Transboundary and Emerging Diseases,2010,57(4):221-224. [35] 杜琳,王丽芳,冯小慧,等.中国五个省市自治区奶牛乳房炎金黄色葡萄球菌的分离鉴定及药敏试验[J].中国动物传染病学报,2018,网络首发. DU L,WANG L F,FENG X H,et al.Isolation,identification and drug resistance analysis of Staphylococcus aureus of dairy cow mastitis in some regions of China[J].Chinese Journal of Animal Infectious Diseases,Epub ahead of print.(in Chinese) [36] CÔTÉ-GRAVEL J,MALOUIN F.Symposium review:Features of Staphylococcus aureus mastitis pathogenesis that guide vaccine development strategies[J].Journal of Dairy Science,2019,102(5):4727-4740. [37] BARKEMA H W,SCHUKKEN Y H,ZADOKS R N.Invited review:The role of cow,pathogen,and treatment regimen in the therapeutic success of bovine Staphylococcus aureus mastitis[J].Journal of dairy science,2006,89(6):1877-1895. [38] RUF J,JOHLER S,MERZ A,et al.Success of interventions in mastitis problems with Staphylococcus aureus after the introduction of an automatic milking system[J]. Schweizer Archiv Fur Tierheilkunde,2015,157(3):153-157. [39] MAUNSELL F P,WOOLUMS A R,FRANCOZ D,et al.Mycoplasma bovis infections in cattle[J].Journal of Veterinary Internal Medicine,2011,25(4):772-783. [40] BÜRKI S,FREY J,PILO P.Virulence,persistence and dissemination of Mycoplasma bovis[J].Veterinary Microbiology,2015,179(1-2):15-22. [41] TIMONEN A A E,KATHOLM J,PETERSEN A,et al.Within-herd prevalence of intramammary infection caused by,Mycoplasma bovis,and associations between cow udder health,milk yield,and composition[J].Journal of Dairy Science,2017,100(8):6554-6561. [42] 王鑫方.动保[J].饲料广角,2018,5:5. WANG X F.Animal health[J]. Feed China,2018,5:5.(in Chinese) [43] MURAI K,HIGUCHI H.Prevalence and risk factors of Mycoplasma bovis infection in dairy farms in Northern Japan[J].Research in Veterinary Science,2019,123:29-31. [44] 陈嘉.2010-2016年间我国北方部分地区支原体型奶牛乳房炎病原流行病学调查[D].大庆:黑龙江八一农垦大学,2017. CHEN J.Epidemiological survey of the pathogens of Mycoplasma-type cow mastitis in parts of Northern China during 2010-2016[D].Daqing:Heilongjiang Bayi Agricultural University,2017.(in Chinese) [45] LYSNYANSKY I,FREED M,ROSALES R S,et al.An overview of Mycoplasma bovis mastitis in Israel (2004-2014)[J]. Veterinary Journal,2016,207:180-183. [46] NICHOLAS R A J,FOX L K,LYSNYANSKY I.Mycoplasma mastitis in cattle:To cull or not to cull[J].Veterinary Journal,2016,216:142-147. [47] JOSI C,BÜRKI S,STOJILJKOVIC A,et al.Bovine epithelial in vitro infection models for Mycoplasma bovis[J].Frontiers in Cellular and Infection Microbiology,2018,8:329. [48] 季文恒,吴娅琴,翟肖辉,等.牛支原体疫苗的研究进展[J].中国畜牧兽医,2018,45(3):763-769. JI W H,WU Y Q,ZHAI X H,et al.Advances on the research of vaccine against Mycoplasma bovis[J].China Animal Husbandry & Veterinary Medicine,2018,45(3):763-769.(in Chinese) [49] TOURRET J,DENAMUR E.Population phylogenomics of extraintestinal pathogenic Escherichia coli[J].Microbiology Spectrum,2016,4(1):1128. [50] 徐伟,陈亚妮,何珊珊,等.奶牛急性大肠杆菌性乳房炎病例[J].中国兽医杂志,2016,52(9):119-120. XU W,CHEN Y N,HE S S,et al.Case of acute Escherichia coli mastitis in dairy cows[J].Chinese Journal of Veterinary Medicine,2016,52(9):119-120.(in Chinese) [51] BLUM S E,HELLER E D,LEITNER G.Long term effects of Escherichia coli mastitis[J]. Veterinary Journal,2014,201(1):72-77. [52] 王晶.奶牛临床型乳房炎病因调查和病原分离鉴定及药敏试验[D].杨凌:西北农林科技大学,2018. WANG J.Investigation on the causes of clinical mastitis in bovine,isolation,identification and drug sensitivity test[D].Yangling:Northwest A & F University,2018.(in Chinese) [53] AMER S,GÁLVEZ F L A,FUKUDA Y,et al.Prevalence and etiology of mastitis in dairy cattle in El Oro Province,Ecuador[J]. Journal of Veterinary Medical Science,2018,80(6):861-868. [54] HAGIWARA S,MORI K,OKADA H,et al.Acute Escherichia coli mastitis in dairy cattle:Diagnostic parameters associated with poor prognosis[J].Journal of Veterinary Medical Science,2014,76(11):1431-1436. [55] BRADLEY A J,GREEN M J.Adaptation of Escherichia coli to the bovine mammary gland[J].Journal of Clinical Microbiology,2001,39(5):1845-1849. [56] LEIMBACH A,POEHLEIN A,VOLLMERS J.No evidence for a bovine mastitis Escherichia coli pathotype[J].BMC Genomics,2017,18(1):359. [57] BOIREAU C,CAZEAU G,JARRIGE N,et al.Antimicrobial resistance in bacteria isolated from mastitis in dairy cattle in France,2006-2016[J].Journal of Dairy Science,2018,101(10):9451-9462. [58] 姚伟,高锋,曹明慧,等.辽宁地区奶牛乳房炎源大肠杆菌毒力基因及耐药基因检测分析[J].中国畜牧兽医,2017,44(6):1832-1839. YAO W,GAO F,CAO M H,et al.Detection and analysis of virulence genes and drug resistance genesin E.coli strains isolated from dairy cows with clinical mastitis in Liaoning region[J].China Animal Husbandry & Veterinary Medicine,2017,44(6):1832-1839.(in Chinese) |
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