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Isolation and Molecular Identification of Virulence, Antimicrobial and Heavy Metal Resistance Genes in Livestock-Associated Methicillin-Resistant Staphylococcus aureus

机译:与家畜相关的耐甲氧西林金黄色葡萄球菌的毒力,抗菌和重金属抗性基因的分离和分子鉴定

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Staphylococcus aureus is one of the most important pathogens of humans and animals. Livestock production contributes a significant proportion to the South African Gross Domestic Product. Consequently, the aim of this study was to determine for the first time the prevalence, virulence, antibiotic and heavy metal resistance in livestock-associated S. aureus isolated from South African livestock production systems. Microbial phenotypic methods were used to detect the presence of antibiotic and heavy metal resistance. Furthermore, molecular DNA based methods were used to genetically determine virulence as well as antibiotic and heavy metal resistance determinants. Polymerase chain reaction (PCR) confirmed 217 out of 403 (53.8%) isolates to be S. aureus . Kirby-Bauer disc diffusion method was conducted to evaluate antibiotic resistance and 90.8% of S. aureus isolates were found to be resistant to at least three antibiotics, and therefore, classified as multidrug resistant. Of the antibiotics tested, 98% of the isolates demonstrated resistance towards penicillin G. High resistance was shown against different heavy metals, with 90% (196/217), 88% (192/217), 86% (188/217) and 84% (183/217) of the isolates resistant to 1500 μg/mL concentration of Cadmium (Cd), Zinc (Zn), Lead (Pb) and Copper (Cu) respectively. A total of 10 antimicrobial resistance and virulence genetic determinants were screened for all livestock associated S. aureus isolates. Methicillin-resistant S. aureus (MRSA) isolates were identified, by the presence of mecC , in 27% of the isolates with a significant relationship ( p 0.001)) with the host animal. This is the first report of mecC positive LA-MRSA in South Africa and the African continent. The gene for tetracycline resistance ( tetK) was the most frequently detected of the screened genes with an overall prevalence of 35% and the highest prevalence percentage was observed for goats (56.76%) followed by avian species (chicken, duck and wild birds) (42.5%). Virulence-associated genes were observed across all animal host species. The study reports the presence of luks/pv , a gene encoding the PVL toxin previously described to be a marker for community acquired-MRSA, suggesting the crossing of species between human and livestock. The high prevalence of S. aureus from the livestock indicates a major food security and healthcare threat. This threat is further compounded by the virulence of the pathogen, which causes numerous clinical manifestations. The phenomenon of co-selection is observed in this study as isolates exhibited resistance to both antibiotics and heavy metals. Further, all the screened antibiotic and heavy metal resistance genes did not correspond with the phenotypic resistance.
机译:金黄色葡萄球菌是人类和动物最重要的病原体之一。畜牧生产对南非国内生产总值的贡献很大。因此,本研究的目的是首次确定从南非牲畜生产系统中分离出来的与牲畜相关的金黄色葡萄球菌的流行,毒力,抗生素和重金属抗性。微生物表型方法用于检测抗生素和重金属耐药性的存在。此外,基于分子DNA的方法被用于遗传确定毒力以及抗生素和重金属抗性决定簇。聚合酶链反应(PCR)证实403株分离菌中有217株(53.8%)为金黄色葡萄球菌。进行了Kirby-Bauer椎间盘扩散法评估抗生素耐药性,发现90.8%的金黄色葡萄球菌对至少三种抗生素具有耐药性,因此被归为多药耐药性。在测试的抗生素中,有98%的分离株表现出对青霉素G的抗性。对各种重金属显示出高抗性,其中90%(196/217),88%(192/217),86%(188/217)和分离株中有84%(183/217)分别抵抗1500μg/ mL的镉(Cd),锌(Zn),铅(Pb)和铜(Cu)。针对所有与牲畜相关的金黄色葡萄球菌分离株,共筛选了10种抗菌素耐药性和毒力遗传决定因素。在存在mecC的情况下,鉴定出耐甲氧西林金黄色葡萄球菌(MRSA)分离株中有27%与宿主动物有显着关系(p <0.001)。这是南非和非洲大陆mecC阳性LA-MRSA的首次报道。在筛选的基因中,最常检测到四环素抗性基因(tetK),总体患病率为35%,其中山羊(56.76%)患病率最高,其次是禽类(鸡,鸭和野禽)( 42.5%)。在所有动物宿主物种中均观察到了与毒力相关的基因。这项研究报告了luks / pv(一种编码PVL毒素的基因)的存在,该基因先前被描述为社区获得性MRSA的标志物,表明人与畜之间存在种间杂交。牲畜中金黄色葡萄球菌的高流行表明主要的粮食安全和医疗保健威胁。病原体的毒力进一步加剧了这种威胁,导致许多临床表现。在本研究中观察到共选现象,因为分离株对抗生素和重金属均显示出抗性。此外,所有筛选的抗生素和重金属抗性基因均不与表型抗性相对应。

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