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首页> 外文期刊>International Journal of Food Microbiology >Molecular characteristics of extended-spectrum beta-lactamase/AmpC-producing Salmonella enterica serovar Virchow isolated from food-producing animals during 2010-2017 in South Korea
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Molecular characteristics of extended-spectrum beta-lactamase/AmpC-producing Salmonella enterica serovar Virchow isolated from food-producing animals during 2010-2017 in South Korea

机译:在韩国2010-2017期间,从食品生产动物分离出食品生物分离的扩展光谱β-内酰胺酶/安瓿生产沙门氏菌的分子特征

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摘要

Global dissemination of non-typhoidal Salmonella producing extended-spectrum beta-lactamase (ESBL) is a publichealth concern. Recently, the prevalence of Salmonella spp. resistant to third-generation cephalosporins has been increasing in food-producing animals in Korea. In this study, we investigated resistance mechanisms and molecular characteristics of S. Virchow isolates resistant to extended-spectrum cephalosporins (ESCs). We obtained 265 S. Virchow isolates from fecal and carcasses samples of cattle (n = 2), pigs (n = 7), and chickens (n = 256) during 2010-2017, and observed high ESC-resistance (63.8%, 169/265); most of the resistant isolates (96.4%) were obtained from chickens. ESC-resistant S. Virchow isolates (n = 169) showed significantly higher resistance rates to other antimicrobials (especially aminoglycosides and tetracycline, p-value< 0.0001), as well as prevalence of multidrug resistance, than did ESC-susceptible S. Virchow isolates (n = 96). All ESC-resistant S. Virchow produced CTX-M-15-type ESBL (n = 147) and/or CMY-2-type AmpC beta-lactamase (n = 23). ESC-resistant S. Virchow represented seven pulsotypes, predominantly composed of type II (58.6%) and III (26.0%), detected in 69 farms in 10 provinces, and 33 farms in 7 provinces, respectively. Genes encoding ESC-resistance were horizontally transferred by conjugation to recipient E. coli J53; this was demonstrated in 28.8% (42/146) of bla(CTX-M-15)-positive isolates and in 50.0% (11/22) of bla(CMY-2)-positive isolates. All conjugative plasmids carrying bla(CTX-M-15) and bla(CMY-2) genes belonged to ST2-IncHI2 and ST12/CC12-IncI1, respectively. Genetic features of transferred bla genes were involved with ISEcp1 in both bla(CTX-M-15) and bla(CMY-2); ISEcp1 plays a critical role in the efficient capture, expression, and mobilization of bla genes. In addition to bla(CTX-M-15) genes, resistance markers to aminoglycosides and/or tetracycline were co-transferred to recipient E. coli J53.
机译:全球传播产生扩展谱β-内酰胺酶(ESBL)的非胸腺沙门氏菌是出版物的担忧。最近,Salmonella SPP的患病率。对第三代头孢菌素的抗性在韩国的食品动物中一直在增加。在这项研究中,我们研究了对抗谱头孢菌素(ESC)的抗谱的抗性机制和分子特征。我们在2010-2017期间获得了来自粪便(n = 2),猪(n = 7),猪(n = 7)和鸡(n = 256)的粪便和尸体的病毒分离物,观察到高分性高(63.8%,169 / 265);大部分抗性分离物(96.4%)从鸡获得。 ESC抗性S.Verchow分离物(n = 169)显示出对其他抗微生物(特别是氨基糖苷和四环素,P值<0.0001)的显着更高的阻力速率,以及多药抗性的患病率,而不是ESC易感的S.Virchow分离株(n = 96)。所有ESC抗性S.Verchow都生产CTX-M-15型ESBL(n = 147)和/或CMY-2型AMPCβ-内酰胺酶(n = 23)。 ESC抗性S.Verchow代表了七个脉冲型,主要由II型(58.6%)和III(26.0%)组成,在10个省份的69个农场中检测到,分别在7个省份的33个农场。编码ESC抗性的基因通过缀合与受体大肠杆菌J53水平转移;这是在28.8%(42/146)的BLA(CTX-M-15) - 正性分离物中和50.0%(11/22)的BLA(CMY-2) - 阳性分离物中的展示。携带BLA(CTX-M-15)和BLA(CMY-2)基因的所有共轭质粒分别属于ST2-INC12和ST12 / CC12-INCI1。转移的BLA基因的遗传特征在BLA(CTX-M-15)和BLA(CMY-2)中涉及ISECP1; ISECP1在高效捕获,表达和动员中起着关键作用。除了BLA(CTX-M-15)基因外,对氨基糖苷和/或四环素的抗性标记将与受体大肠杆菌J53共转移。

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