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1.
旨在调查和分析广东省养禽场肠球菌的亚型屎肠球菌和粪肠球菌耐药性及其毒力因子流行分布特征,为控制禽源肠球菌耐药性传播、保障公共卫生安全提供理论依据。作者于2018年从广东省4个养禽场采集肠道样品493份,进行屎肠球菌和粪肠球菌的分离鉴定;采用琼脂二倍稀释法测定肠球菌的最小抑菌浓度(MIC);PCR方法检测肠球菌的耐药基因和毒力基因。结果显示:1)共分离到125株肠球菌,其中粪肠球菌84株(鸡源66株,鸭源18株);屎肠球菌41株,均来自鸡肠道样本。2)菌株对四环素、多西环素、红霉素几乎全部耐药,对氟苯尼考和氯霉素的耐药率高达89.60%和74.40%。屎肠球菌耐药率普遍高于粪肠球菌,而粪肠球菌对环丙沙星和利奈唑胺的耐药率高于屎肠球菌;鸭源粪肠球菌对利奈唑胺的耐药率(94%)显著高于鸡源粪肠球菌(39.4%),屎肠球菌对利奈唑胺均敏感。从鸡分离的1株粪肠球菌对万古霉素耐药。3)耐药基因在屎肠球菌中的检出率高于粪肠球菌,鸭源分离株检出率高于鸡源。耐药基因tetL、fexA、ermB最为流行,检出率均高于90%。其次是optrA基因,检出率为73.60%,poxtAfexB的检出率均低于20%。在3株鸭源粪肠球菌中检测出cfr基因。4)已检测的毒力基因中efaA的携带率最高,为63.04%(58/92),其他依次为gelE(54.35%,50/92)、ace(47.83%,44/92)、asa1(44.57%,41/92)。对环丙沙星及高浓度氨基糖苷类耐药的菌株及携带cfr基因的菌株,大多携带agg、asal、gelEace。本研究显示养殖场禽源肠球菌耐药严重,鸭源肠球菌对利奈唑胺耐药率高,耐药基因和毒力基因流行且多样,且检测出人医临床重要抗生素耐药基因,应加强对养禽场肠球菌耐药性监测。  相似文献   

2.
为了解乌鲁木齐市宠物源粪肠球菌和屎肠球菌对临床常用抗菌药物的耐药性及其耐药基因携带情况,在乌鲁木齐市多家宠物医院、警犬基地、犬养殖基地采集宠物(犬和猫)直肠粪样449份进行粪肠球菌和屎肠球菌的分离鉴定,通过琼脂稀释法测定10种抗菌药物的最小抑菌浓度,利用PCR方法检测11种耐药基因。结果分离鉴定出宠物源粪肠球菌和屎肠球菌共计123株,其中粪肠球菌81株,屎肠球菌42株。宠物源粪肠球菌和屎肠球菌对四环素和庆大霉素的耐药率较高,对阿米卡星、恩诺沙星和环丙沙星呈不同程度耐药,对阿莫西林/克拉维酸、氨苄西林、万古霉素以及利奈唑胺高度敏感,仅部分屎肠球菌对亚胺培南表现耐药。检出aac(6′)/aph(2″)、aph(3′)-Ⅲ、tetM、tetA和optrA耐药基因;其余被检耐药基因未检出。耐药粪肠球菌以同时携带aac(6′)/aph(2″)+aph(3′)-Ⅲ+tetM耐药基因为主;耐药屎肠球菌以携带tetM耐药基因为主。宠物源粪肠球菌与屎肠球菌对被检抗菌药物存在不同程度耐药,均对四环素类药物耐药最严重、对应耐药基因检出率也最高。建议临床治疗应根据细菌耐药性结果进行合理用药,并持续加强对宠物源肠球菌耐药性监测。  相似文献   

3.
鸭疫里默氏菌的gyrA基因的检测与变异位点的分析   总被引:1,自引:0,他引:1  
近年来,随着喹诺酮类药物的广泛应用,尤其是一些养殖场的盲目滥用和超量服用,导致耐药菌株不断出现。关于耐药的大肠埃希氏菌、金黄色葡萄球菌、粪肠球菌、铜绿假单胞菌等细菌在其螺旋酶gyrA基因的喹诺酮类药物决定区(QRDR)的突变热点已有很多报道,这些菌株的突变热点相对于大肠杆菌来说,发生在第83位和87位的氨基酸上。到目前为止,鸭疫里默氏菌螺旋酶gyrA基因还是未知的,其耐药基因的突变更没有报道。本试验测出了鸭疫里默氏菌gyrA的部分基因,找到了对喹诺酮类抗生素耐药菌株的基因突变热点和突变规律。为以后研究鸭疫里默氏菌对喹诺酮类抗生素耐药的分子机制提供了基础。  相似文献   

4.
探讨不同禽源大肠埃希菌中喹诺酮类药物的耐药情况及耐药基因gyrA的分布和突变特征。采用K-B药敏纸片法、gyrA基因的PCR扩增,对9株大肠埃希菌进行喹诺酮类药物试验,并将gyrA基因的PCR产物测序,对测序结果采用DNA MAN、DNA Star、MEGA6等软件分析。药敏试验结果表明,C1、C2、C3菌株对左氧沙星、氧氟沙星、环丙沙星、诺氟沙星敏感,D1、D2、D3、B1、B2和B3菌株对左氧沙星、氧氟沙星、环丙沙星、诺氟沙星均表现为耐药和中介;gyrA基因的测序结果表明,除B1菌株有1处核苷酸突变位点和B2菌株有14处核苷酸突变位点;B2菌株gyrA基因的氨基酸突变发生在87位Ile→Val替代、101位Leu→Met替代、102位Ala→Ser替代、129位Lys→Gln替代。9株禽源大肠埃希菌的同源性和进化树分析表明,不同禽源耐氟喹诺酮类药物的大肠埃希菌菌株中B2菌株gyrA基因与其他9株菌株相比,同源性在90%左右,进化树不在一个分支上,研究中的B2菌株将为大肠埃希菌的氟喹诺酮类耐药机制的研究提供候选菌株。  相似文献   

5.
新疆北疆地区猪源粪肠球菌的耐药性分析   总被引:1,自引:1,他引:0  
为了解新疆北疆地区猪源粪肠球菌的耐药性及相关耐药基因型的分布情况,本试验采用K-B(Kirby-Baller)琼脂扩散法检测了49株猪源粪肠球菌对8种抗菌药物的敏感性,并采用PCR法对9种相关耐药基因进行检测并测序,测序结果与GenBank中的相应基因序列比对。药敏试验结果显示,分离菌对链霉素耐药率最高,其次为青霉素和红霉素,对呋喃妥因、氨苄西林高度敏感。PCR检测结果显示,β-内酰胺类耐药基因tem的检出率最高,为93.88%,其次是四环素类耐药基因tetM,为85.71%,喹诺酮类基因gyrA和parC检出率均为42.86%,氨基糖苷类耐药基因aph(3')-Ⅲ、aac(6')/aph2″和ant(6')-Ⅰ的检出率分别为36.73%、16.33%和16.33%,未检出mefA和ermB基因。本试验从表型与基因型分析发现,北疆地区猪源粪肠球菌的多重耐药现象非常严重,且其耐药表型与基因型并不完全一致。  相似文献   

6.
新疆北疆地区猪源粪肠球菌的耐药性分析   总被引:1,自引:0,他引:1  
为了解新疆北疆地区猪源粪肠球菌的耐药性及相关耐药基因型的分布情况,本试验采用K-B(Kirby-Baller)琼脂扩散法检测了49株猪源粪肠球菌对8种抗菌药物的敏感性,并采用PCR法对9种相关耐药基因进行检测并测序,测序结果与GenBank中的相应基因序列比对。药敏试验结果显示,分离菌对链霉素耐药率最高,其次为青霉素和红霉素,对呋喃妥因、氨苄西林高度敏感。PCR检测结果显示,β-内酰胺类耐药基因tem的检出率最高,为93.88%,其次是四环素类耐药基因tetM,为85.71%,喹诺酮类基因gyrA和parC检出率均为42.86%,氨基糖苷类耐药基因aph(3′)-Ⅲ、aac(6′)/aph2″和ant(6′)-Ⅰ的检出率分别为36.73%、16.33%和16.33%,未检出mefA和ermB基因。本试验从表型与基因型分析发现,北疆地区猪源粪肠球菌的多重耐药现象非常严重,且其耐药表型与基因型并不完全一致。  相似文献   

7.
采用松鼠源肠道样品进行细菌分离培养和细菌16SrRNA基因PCR扩增、测序分析,并进行纸片扩散法药敏试验。结果显示,在33只赤腹松鼠肠道中分离出117株细菌,赤腹松鼠肠道内细菌类群主要有葡萄球菌属(金色葡萄球菌、表皮葡萄球菌、松鼠葡萄球菌)、埃希菌属(大肠埃希菌)、芽胞杆菌属(蜡样芽胞杆菌、Weihenstephanensis芽胞杆菌、苏云金芽胞杆菌、Samanii芽胞杆菌、枯草芽胞杆菌)、肠球菌属(粪肠球菌)、克雷伯菌属(肺炎克雷伯菌)、假单胞菌属(荧光假单胞菌)、明串珠菌属(肠膜样明串珠菌);粪肠球菌、肺炎克雷伯菌、大肠埃希菌对大部分试验药物高度敏感,其他细菌对部分受试药物耐药。赤腹松鼠肠道细菌种群具有多样性,且存在天然耐药现象。本研究为进一步研究野生动物体内细菌携带天然耐药基因提供了素材,也为森林旅游开发的安全性评估及环境保护提供了参考。  相似文献   

8.
为研究黄芩苷能否增强喹诺酮类药物环丙沙星对鸵鸟源大肠杆菌的抗菌活性,本试验先用二倍稀释法测定单个药物对鸵鸟源大肠杆菌的抗菌活性,进而筛选出10株耐药菌株(T1~T4、T7、T8、T10、T12、T21、T25),然后采用微量肉汤稀释棋盘法,用环丙沙星和黄芩苷对以上10株耐药菌株进行体外联合药敏试验。结果发现环丙沙星和黄芩苷单用的MIC分别为64和512或1024 μg/mL;联合用药后,对10株耐药菌的分级抑菌浓度进行测定,其中T1、T2、T3、T7、T8、T10、T12、T21的分级抑菌浓度均为0.375,T4、T25的分级抑菌浓度均为0.25,10株菌的分级抑菌浓度均小于0.5。结果表明,环丙沙星和黄芩苷联合对鸵鸟源大肠杆菌起协同作用。  相似文献   

9.
本文从辽宁某鸡场100份肉鸡盲肠拭子中分离获得粪肠球菌24株,通过ATB细菌鉴定仪进行鉴定确认为粪肠球菌,并对这24株粪肠球菌进行了14种抗生素的药敏试验。结果显示,粪肠球菌对青霉素、万古霉素、氨苄西林和替拉考宁敏感;对红霉素、氯霉素、环丙沙星、四环素、左氧氟沙星和奎奴普汀/达福普汀耐药,耐药率均达到100.0%,养殖场抗菌药物耐药严重。  相似文献   

10.
通过微量稀释法测定28株猪源链球菌对环丙沙星的MIC值,研究东北地区猪源链球菌对环丙沙星耐药性与parC、gyrA基因突变的相关性.通过PCR方法扩增parC和gyrA基因喹诺酮耐药决定区(QRDR)并测序分析;18株耐药菌在parC基因80位的突变(AGC→ATT)导致氨基酸Ser→Ile突变,11株高度耐药菌在gyrA基因81位的突变(CAG→)CAT、CTT或CTA)导致氨基酸Ser→Ile、Phe或Tyr的突变.当菌株对环丙沙星的MIC值≤1μ/mL时,parC和gyrA基因的QRDR区均未有突变;而当MIC ≥2μg/mL时,ParC的氨基酸发生了Ser80→Ile的突变,同时发生GyrA氨基酸Ser81突变的菌株,耐药水平很高.研究表明,环丙沙星低水平类耐药是由于拓扑异构酶Ⅳ改变引起,而高水平耐药是由拓扑异构酶Ⅳ、DNA旋转酶共同改变引起的.实验结果证明,在一定条件下,耐药性的高低与突变位点的多少成正比.  相似文献   

11.
AIM: To determine the resistance to antibiotics among the indictor bacteria, Escherichia coli and Enterococcus spp, isolated from the faeces of healthy pigs on three conventional pig farms and one organic farm in the North Island of New Zealand. METHODS: Faecal samples, collected at intervals between March and October 2001, were plated onto MacConkey agar and Slanetz-Bartley agar and examined after 1-3 days incubation for colonies resembling E. coli and Enterococcus spp, respectively. Typical colonies were subcultured for further identification and storage. The isolates were tested for antibiotic resistance, using disc diffusion, to ampicillin, gentamicin, streptomycin, and tetracycline. Escherichia coli isolates were also tested for resistance to ciprofloxacin, cotrimoxazole and neomycin. Enterococcus spp isolates were also tested for resistance to vancomycin, erythromycin and virginiamycin. RESULTS: A total of 296 E. coli and 273 Enterococcus spp isolates were obtained from the three conventional farms, and 79 E. coli and 80 Enterococcus spp isolates were obtained from the organic farm. All the E. coli isolates from both the conventional and organic pig farms were susceptible to ciprofloxacin, and all the Enterococcus spp isolates were susceptible to ampicillin, gentamicin and vancomycin. Isolates of E. coli from conventional pig farms were resistant to gentamicin (0.7%), neomycin (0.7%), ampicillin (2.7%), cotrimoxazole (11%), streptomycin (25%) and tetracycline (60%). Enterococcus spp isolates from the same farms were resistant to erythromycin (68%), tetracycline (66%), streptomycin (54%) and virginiamycin (49%). By contrast, for the organic pig farm 相似文献   

12.
为研究我国猪源肠球菌的耐药情况,本研究采集18个省市猪养殖场的粪便样品836份进行了肠球菌的分离鉴定,并通过琼脂稀释法测定11种抗菌药物的最小抑菌浓度。结果显示:从836份样品中共分离出225株肠球菌,其中屎肠球菌106株,粪肠球菌56株,小肠肠球菌34株,鹑鸡肠球菌17株,铅黄肠球菌7株,坚忍肠球菌4株,Enterococcus thailandicus 1株。所有的肠球菌对被检抗菌药物耐药程度由高到低依次是四环素(98.2%)、阿米卡星(94.7%)、多西环素(89.3%)、米诺环素(88.9%)、氟苯尼考(88.4%)、红霉素(86.2%)、环丙沙星(63.1%)、氨苄西林(33.8%)、氯霉素(29.8%),未检测到万古霉素和利奈唑胺耐药菌株。除氨苄西林、万古霉素、利奈唑胺外,粪肠球菌对其余8种被检抗菌药物耐药率均高于屎肠球菌。小肠肠球菌对阿米卡星、红霉素、四环素、多西环素、米诺环素5种抗菌药物的耐药率高于屎肠球菌。肠球菌的多重耐药情况集中在6耐、7耐和8耐,占肠球菌总数的72.9%。本研究表明我国猪源肠球菌对常见抗菌药物耐药率较高,应引起更多关注。  相似文献   

13.
National surveillance programs on antimicrobial usage and antimicrobial resistance in animals have been established in various countries but few of them include bacteria from pets. The objectives of this study were to assess the prevalence of antimicrobial resistance in healthy dogs and to search for resistance phenotypes of clinical relevance. Escherichia coli and Enterococcus spp. were isolated from faecal swabs obtained from 127 dogs. Disk diffusion was used to measure antimicrobial susceptibility in 117 Escherichia coli, 10 Enterococcus faecium and 51 Enterococcus faecalis of canine origin. Resistance was relatively low compared with food animal species in Denmark. All Escherichia coli isolates were susceptible to broad-spectrum aminopenicillins, third generation cephalosporins and fluoroquinolones. Despite the low prevalence of resistance, statistical analysis of questionnaire data revealed a significant association (p=0.02) between recent antimicrobial treatment and resistance in Escherichia coli. Interestingly, two dogs were found to shed Enterococcus faecium resistant to ampicillin. Multilocus sequence typing of these isolates indicated that the two isolates belonged to sequence types associated with human nosocomial infections, and one (ST-192) was genetically related to human epidemic clonal complex 17. The detection of ampicillin-resistant Enterococcus faecium warrants further studies on the prevalence of these bacteria in dogs and on the possible implications to both animal and human health. The results suggest that distinct methods for detection and assessment of antimicrobial resistance in animals should be considered depending on the target animal species and the purposes of the study.  相似文献   

14.
Faecal samples were collected, as part of the National Health Surveillance Program for Cervids (HOP) in Norway, from wild red deer, roe deer, moose and reindeer during ordinary hunting seasons from 2001 to 2003. Samples from a total of 618 animals were examined for verocytotoxic E. coli (VTEC); 611 animals for Salmonella and 324 animals for Campylobacter. A total of 50 samples were cultivated from each cervid species in order to isolate the indicator bacterial species E. coli and Enterococcus faecalis / E. faecium for antibiotic resistance pattern studies. Salmonella and the potentially human pathogenic verocytotoxic E. coli were not isolated, while Campylobacter jejuni jejuni was found in one roe deer sample only. Antibiotic resistance was found in 13 (7.3%) of the 179 E. coli isolates tested, eight of these being resistant against one type of antibiotic only. The proportion of resistant E. coli isolates was higher in wild reindeer (24%) than in the other cervids (2.2%). E. faecalis or E. faecium were isolated from 19 of the samples, none of these being reindeer. All the strains isolated were resistant against one (84%) or more (16%) antibiotics. A total of 14 E. faecalis-strains were resistant to virginiamycin only. The results indicate that the cervid species studied do not constitute an important infectious reservoir for either the human pathogens or the antibiotic resistant microorganisms included in the study.  相似文献   

15.
Qualitative tests are used to monitor antimicrobial resistance in bacteria of animal origin in the Netherlands. Quantitative information on trends in resistance is thus not obtained. Moreover, in general a limited panel of antibiotics is tested. The present study describes resistance in zoonotic food-borne pathogens Salmonella, Campylobacter, and Escherichia coli O157 isolated from human clinical cases and from faeces of healthy food animals in 1998 and 1999, as determined with quantitative susceptibility tests. The resistance of the indicator organisms E. coli and Enterococcus faecium isolated from faecal samples of broilers and pigs randomly sampled at slaughterhouses was also determined. For this end, faecal samples from veal calves were sampled in 1996 and 1997 at the three main Dutch veal calf slaughterhouses. In 1998 only a limited number of faecal samples of veal calves were taken at farms. For E. coli and Salmonella the following antibiotics were tested: amoxicillin, amoxicillin-clavulanic acid, piperacillin, cefotaxime, ceftazidime, imipenem, gentamicin, doxycycline, trimethoprim, trimethoprim/sulphamethoxazole, ciprofloxacin, chloramphenicol, florfenicol, carbadox, and flumequine. For E. faecium the following antibiotics were tested: amoxicillin, amoxicillin-clavulanic acid, chloramphenicol, doxycycline, erythromycin, vancomycin, teicoplanin, streptomycin ('high level' > 2000 mg/ml), gentamicin ('high level' > 500 mg/ml), ciprofloxacin, bacitracin, flavofosfolipol, salinomycin, quinupristin-dalfopristin, virginiamycin, tilmicosin, avilamycin, and everninomycin. For Campylobacter the following antibiotics were tested: erythromycin, doxycycline, gentamicin, carbadox, flavofosfolipol, ciprofloxacin, trimethoprim/sulphamethoxazole, amoxicillin, and metronidazole.  相似文献   

16.
采用琼脂扩散法测定粪肠球菌发酵上清液对大肠埃希菌K88的抑菌活性,从而确定产enterocin E5细菌素粪肠球菌的发酵条件。结果表明,粪肠球菌E5产细菌素的发酵培养基为MRS培养基,最适温度为37℃,最适起始pH值6.5,最佳接种量2%,种龄14 h,发酵时间16 h,最佳培养基组分氮源为1%胰蛋白胨、0.5%酵母浸粉,最佳碳源为1%葡萄糖、0.5%蔗糖,0.1%Tween-80有利于enterocin E5的产生。这是分离自北京优良商品猪黑六产enterocin E5粪肠球菌的首次报道。  相似文献   

17.
为了解豫北地区规模化养殖场猪源大肠杆菌的耐药性及基因多态性,对分离的21株猪源大肠杆菌进行药物敏感实验,采用PCR技术对其耐药基因进行检测,RAPD技术进行基因多态性分析。结果表明:豫北地区规模化养殖场分离的猪源性大肠杆菌菌株对常见16种抗生素存在不同情况的耐药性。其中对四环素、红霉素、麦迪霉素、阿莫西林、磺胺异恶唑、环丙沙星、新生霉素、复方新诺明、恩诺沙星、甲氧苄啶的耐药率均为100%,对庆大霉素、洛美沙星的耐药率为85%以上,对其他药物的耐药率相对较低;PCR检测得到8种耐药基因的条带;对菌株进行RAPD分析得到7种不同的基因型。大肠杆菌极易产生耐药性,耐药基因广泛存在于耐药菌株中,但耐药表型与耐药基因之间无绝对相关性。豫北地区猪源大肠杆菌感染多重耐药十分严重,严重影响了该地区猪源大肠杆菌病的诊治和预防。  相似文献   

18.
The major influences on the amplification and spread of antibiotic-resistant bacteria are the therapeutic use of antibiotics in human medicine and their use in livestock for therapy, prophylaxis and growth promotion. The use of veterinary antibiotics has many benefits to the livestock industries ensuring animal health and welfare, but use at subtherapeutic levels also exerts great selective pressure on emergence of resistant bacteria. The possible effect on human health is a problem of current debate. This study involved sampling pig carcasses, pig meat and assessing the level of resistance in zoonotic enteric bacteria of concern to human health. In South Australian pigs, thermophilic Campylobacter species showed widespread resistance (60-100%) to tylosin, erythromycin, lincomycin, ampicillin and tetracycline. No resistance was seen to ciprofloxacin. The enterococci demonstrated little resistance (0-30%) to vancomycin or virginiamycin, but the overall results from the antibiotic sensitivity testing of the enterococci have demonstrated how widespread their resistance has become. Escherichia coli strains showed widespread resistance to tetracycline and moderately common resistance (30-60%) to ampicillin and sulphadiazine. Resistance to more than one antibiotic was common. Pigs from New South Wales were also sampled and differences in resistance patterns were noted, perhaps reflecting different antibiotic use regimens in that state.  相似文献   

19.
Antibiotic resistance and ESBL constitute a risk to human and animal health. Birds residing close to humans could mirror the spectrum of human associated antibiotic resistance. Household pigeons were screened in Bangladesh to shed light on human associated, as well as, environmental antibiotic resistance. Escherichia coli from pigeons (n = 150) were tested against 11 antibiotics. 89% E. coli isolates were resistant to one or more critically important human antibiotics like ampicillin, cefadroxil, mecillinam, ciprofloxacin, gentamicin and tigecycline. No carbapenamase-producers were detected and the lower ESBL prevalence (5%) in pigeons. ESBL-producing E. coli isolates had blaCTX-M-15 genes. Pigeons shared some bacterial clones and had bird associated sequence types like E. coli ST1408. Fecal carriage of bacteria resistance of critically important human antibiotics, together with examples of shared genotypes among pigeons, indicate the human-birds and bird to bird transmissions are important in the epidemiology of antibiotic resistance.  相似文献   

20.
为了解上海地区动物源粪肠球菌、屎肠球菌对常见抗菌药物的耐药及其最小抑菌浓度(minimal inhibitory concentration,MIC)变迁情况,采用微量肉汤稀释法对近五年采集的粪肠球菌、屎肠球菌进行10种常见抗菌药物敏感性测试。结果表明,458株粪肠球菌及283株屎肠球菌对头孢西丁、头孢噻呋及氧氟沙星耐药率较高(均高于60%),对青霉素、阿莫西林/克拉维酸及万古霉素的耐药率较低(均低于11%),粪肠球菌耐药率整体高于屎肠球菌,两者对氧氟沙星、头孢噻呋、氟苯尼考、庆大霉素、利奈唑胺、恩诺沙星的耐药率存在较大差异(耐药率差异为15%~44%)。五年间,粪肠球菌对阿莫西林/克拉维酸、氧氟沙星的MIC50及MIC90均呈下降趋势;屎肠球菌对阿莫西林/克拉维酸、头孢西丁及氟苯尼考的MIC50及MIC90均呈下降趋势。研究表明,近年来上海地区动物源粪肠球菌、屎肠球菌的耐药情况有好转趋势,仍需继续加强肠球菌耐药性监测。  相似文献   

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