161 | 0 | 96 |
下载次数 | 被引频次 | 阅读次数 |
梅花鹿(Cervus nippon Temmick)作为一种名贵的药食两用经济动物,在我国有着近300年的驯养历史。然而,在梅花鹿饲养过程中,细菌性疾病是影响其生命健康和生产效益的主要因素之一。鉴于细菌性疾病造成的严重危害,该文系统总结了梅花鹿常见的细菌性疾病,主要包括大肠杆菌病、沙门氏菌病及布鲁氏菌病等,通过阐述细菌性疾病的病原学特性、临床症状、流行病学情况及其相关的诊断手段,制定科学的防控措施,以减少细菌性疾病的发生与传播,降低由此带来的经济损失与食品安全风险,推动梅花鹿养殖业的可持续和稳定发展。
Abstract:The sika deer(Cervus nippon Temmick) is a valuable economic animal with both medicinal and edible uses in China, and has a domestication history of nearly 300 years.However, bacterial diseases are one of the main factors affecting the life health and production efficiency of sika deer during their breeding process.In response to the serious harm caused by bacterial diseases, this article systematically summarizes the common bacterial diseases of sika deer, mainly including colibacillosis, salmonellosis and brucellosis, etc.By elaborating on the pathogenic characteristics, clinical symptoms, epidemiological conditions and related diagnostic methods of bacteria, scientific prevention and control measures are formulated to reduce the occurrence and spread of bacterial diseases, lower the economic losses and food safety risks and promote the sustainable and stable development of the sika deer breeding industry.
[1]陈佳佳,李志莲,乔立东,等.浅谈梅花鹿养殖技术[J].山东畜牧兽医,2022,43(11):26-28.
[2]王祺伟,赵禹博.梅花鹿常见疾病的防治措施探讨[J].吉林畜牧兽医,2024,45(06):97-99.
[3]刘安全,农爱红,谢桂萍.广西梅花鹿养殖疫病综合防控技术研究[J].特种经济动植物,2024,27(12):52-54.
[4]殷泽禄,万虎.大肠杆菌的研究综述[J].甘肃畜牧兽医,2019,49(05):33-35.
[5]邵志勇,陈夏冰,何斌,等.大肠杆菌病的研究进展[J].养殖与饲料,2021(08):5-7.
[6]连思琪,吴云平,杨敏卉,等.不同致泻性大肠杆菌感染调控细胞信号通路的研究进展[J].微生物学报,2020,60(08):1534-1547.
[7]王守臻,高敏,李士发,等.梅花鹿溶血性大肠杆菌病的临床观察[J].黑龙江畜牧兽医,1990(01):37-38.
[8]张玉稳.梅花鹿溶血性大肠杆菌病的诊疗[J].中国畜牧业,2022(17):120-121.
[9]冷闯,张文波,邓舜洲,等.一例梅花鹿致病菌的分离、鉴定及药敏试验[J].中国畜牧兽医,2012,39(04):207-211.
[10]陈锐.两种新型酶联免疫分析法超灵敏检测单核增生李斯特菌和大肠杆菌O157:H7[D].南昌:南昌大学,2017.
[11] ZIMON B,PSUJEK M,MATCZAK J,et al.Novel multiplex-PCR test for Escherichia coli detection[J].Microbiology spectrum,2024,12(06):e03773-23.
[12] B?UMLER A J,TSOLIS R M,FICHT T A,et al.Evolution of host adaptation in Salmonella enterica[J].Infect immun,1998,66(10):4579-4587.
[13] ELIAS L,BALASUBRAMANYAM A S,AYSHPUR O Y,et al.Antimicrobial susceptibility of Staphylococcus aureus, Streptococcus agalactiae, and Escherichia coli isolated from mastitic dairy cattle in Ukraine[J].Antibiotics(Basel, Switzerland),2020,9(08):469.
[14] PRADHAN D,DEVI NEGI V.Stress-induced adaptations in Salmonella:a ground for shaping its pathogenesis[J].Microbiol research,2019,229:126311.
[15] MAKA L,POPOWSKA M.Antimicrobial resistance of Salmonella spp.isolated from food[J].Roczniki Panstwowego Zakladu Higieny,2016,67(04):343-358.
[16] ANDINO A,HANNING I.Salmonella enterica:survival, colonization, and virulence differences among serovars[J].The scientific world journal,2015:520179.
[17]刘一霏.鹿源多重耐药沙门氏菌分离鉴定及噬菌体初步应用[D].长春:吉林农业大学,2024.
[18] ZHANG H,ZHOU G,YANG C,et al.The prevalence, distribution, and diversity of Salmonella isolated from pork slaughtering processors and retail outlets in the Shandong Province of China[J].Meat science,2025,221:109734.
[19]张发慧.马鹿沙门氏菌、巴氏杆菌及魏氏梭菌混合感染的诊治[J].中国畜牧兽医,2005(01):56.
[20] GAO B,CHEN X,HUANG X,et al.Urease-induced metallization of gold nanorods for the sensitive detection of Salmonella enterica choleraesuis through colorimetric ELISA[J].Journal of dairy science,2019,102(03):1997 2007.
[21] KISELEVA E,MIKHAILOPULO K,SVIRIDOV O.Detection of Salmonella by competitive ELISA of lipopolysaccharide secreted into the culture medium[J].Analytical biochemistry,2025,697:115695.
[22] HUANG F,JIANG Y,WU Q,et al.A one-pot loop-mediated isothermal amplification platform using fluorescent gold nanoclusters for rapid and naked-eye pathogen detection[J].Food chemistry,2024,460(01):140573.
[23] DING Y,YANG Q,LIU X,et al.An ultrasensitive fluorescence nano-biosensor based on RBP 41-quantum dot microspheres for rapid detection of Salmonella in the food matrices[J].Food chemistry,2025,460:142504.
[24]郝俊伟.鹿布鲁氏菌病实时荧光定量PCR检测方法的建立及初步应用[D].长春:吉林农业大学,2012.
[25] FRANCO M P,MULDER M,GILMAN R H,et al.Human brucellosis[J].The Lancet.Infectious diseases,2007,7(12):775-786.
[26]赵孝泽,苏宏,尹兴航,等.保山市隆阳区首例人间布鲁氏菌病疫情调查处置分析[J].疾病预防控制通报,2020,35(01):23-24.
[27] LOUBET P,MAGNAN C,SALIPANTE F,et al.Diagnosis of brucellosis:combining tests to improve performance[J].Plos neglected tropical diseases,2024,18(09):e0012442.
[28] LIU Q,WEI J,SUN Q,et al.Detection of brucellosis in sika deer(Cervus nippon)through loop-mediated isothermal amplification(LAMP)[J].Journal of wildlife diseases,2017,53(03):612-615.
[29]刘佳音,姜海,杨文杰.荧光偏振检测法在布鲁氏菌病诊断中的应用[J].疾病监测,2021,36(12):1247 1251.
[30] AHANGARI A,MAHMOODI P,ZOLFIGOL M A,et al.Rapid detection of Brucella cells using a gold nanoparticlebased aptasensor via a simple colorimetric method[J].BMC veterinary research,2024,20(01):513.
[31] LI D,LI D N,LIU X Y,et al.Prevalence of Mycobacterium bovis in deer in mainland China:a systematic review and meta-analysis[J].Frontiers in veterinary science,2024,11:1333975.
[32] ANTIMICROBIAL RESISTANCE COLLABORATORS.Global burden of bacterial antimicrobial resistance in 2019:a systematic analysis[J].Lancet,2022,399(10325):629 655.
[33] WANG Y,XU J,CHEN H,et al.A balanced gut microbiota is essential to maintain health in captive sika deer[J].Applied microbiology and biotechnology,2022,106(17):5659-5674.
[34] WIELKOSZYNSKI T,MOGHADDAM A,B?CKMAN A,et al.Novel diagnostic ELISA test for discrimination between infections with Yersinia enterocolitica and Yersinia pseudotuberculosis[J].European journal of clinical microbiology&infectious diseases,2018,37(12):2301-2306.
[35]周艳丽,李喜春,姚轶影.浅谈梅花鹿的检疫要点[J].吉林畜牧兽医,2012,33(01):57.
[36]宋国欣.鹿场布鲁氏菌病净化措施探讨[J].吉林畜牧兽医,2023,44(05):103 104.
[37]孙铁华,马文茹.梅花鹿布鲁氏菌病的诊断与防治[J].吉林特产高等专科学校学报,2004(02):9-10.
[38]宋瑞艳,姜玉财.梅花鹿养殖场布鲁氏菌病净化措施探讨[J].吉林畜牧兽医,2020,41(12):112.
[39]曹润来,王奇林,王威阳,等.梅花鹿主要传染病研究进展[J/OL].特产研究,1 12[2024-09-05].https://doi.org/10.16720/j.cnki.tcyj.2023.235.
[40]张辉,邵乐乐,杨永春,等.朱鹦大肠杆菌分离鉴定及耐药性与喹诺酮类耐药基因分子特征分析[J].中国畜牧兽医,2023,50(10):4231-4242.
[41]张瑞斐.2021—2022年吉林省监测食品中沙门氏菌的污染现状及耐药性研究[D].长春:吉林大学,2024.
[42]陈长江,余梅,柳清,等.散养畜群中布鲁氏菌病的流行及防控[J].中国畜牧业,2024(21):65-66.
基本信息:
DOI:10.13478/j.cnki.jasyu.2025.01.001
中图分类号:S858.25
引用信息:
[1]李佳荃,葛桂阳,蔡若鹏等.梅花鹿常见细菌性疾病特征及防治措施的研究进展[J].延边大学农学学报,2025,47(01):1-7.DOI:10.13478/j.cnki.jasyu.2025.01.001.
基金信息:
国家自然科学基金(32102677,U23A20237); 吉林省自然科学基金(YDZJ202201ZYTS449); 中国博士后科学基金面上资助项目(2021M691224)