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Development and application of real-time PCR assays for quantification of genes encoding tetracycline resistance

机译:实时荧光定量PCR检测方法的开发和应用以定量编码四环素抗性的基因

摘要

We report here the development, validation, and use of three real-time PCR assays to quantify the abundance of the following three groups of tetracycline resistance genes: tet(A) and tet(C); tet(G); and tet genes encoding ribosomal protection proteins, including tet(M), tet(O), tetB(P), tet(Q), tet(S), tet(T), and tet(W). The assays were validated using known numbers of sample-derived tet gene templates added to microbiome DNA. These assays are both precise and accurate over at least 6 log tet gene copies. New tet gene variants were also identified from cloned tet amplicons as part of this study. The utility of these real-time PCR assays was demonstrated by quantifying the three tet gene groups present in bovine and swine manures, composts of swine manure, lagoons of hog house effluent, and samples from an Ekokan upflow biofilter system treating hog house effluent. The bovine manures were found to contain fewer copies of all three groups of tet genes than the swine manures. The composts of swine manures had substantially reduced tet gene abundance (up to 6 log), while lagoon storage or the upflow biofilter had little effect on tet gene abundance. These results suggest that the method of manure storage and treatment may have a substantial impact on the persistence and dissemination of tet genes in agricultural environments. These real-time PCR assays provide rapid, quantitative, cultivation-independent measurements of 10 major classes of tet genes, which should be useful for ecological studies of antibiotic resistance.
机译:我们在这里报告了开发,验证和三种实时PCR分析方法的使用,以量化以下三组四环素抗性基因的丰度:tet(A)和tet(C); tet(G);编码核糖体保护蛋白的tet基因,包括tet(M),tet(O),tetB(P),tet(Q),tet(S),tet(T)和tet(W)。使用添加到微生物组DNA中的已知数量的样品衍生tet基因模板验证了该测定法。这些测定在至少6个log tet基因拷贝上既精确又准确。作为这项研究的一部分,还从克隆的tet扩增子中鉴定出新的tet基因变体。这些实时PCR分析的实用性通过量化存在于牛和猪粪,猪粪堆肥,猪舍废水泻湖以及来自处理猪舍废水的Ekokan上流生物滤池系统的样品中的三个tet基因组来证明。发现牛粪中所有三组tet基因的拷贝都少于猪粪。猪粪堆肥显着降低了tet基因的丰度(最高可达6 log),而泻湖存储或上流式生物滤池对tet基因的丰度影响很小。这些结果表明,粪便的存储和处理方法可能会对农业环境中tet基因的持久性和传播产生重大影响。这些实时PCR分析法可对10种主要的tet基因进行快速,定量,与培养无关的测量,这对抗生素耐药性的生态研究应该是有用的。

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