Development and validation of a TaqMan™ fluorescent quantitative real-time PCR assay for the rapid detection of Edwardsiella tarda

被引:0
作者
Guosi Xie
Jie Huang
Qingli Zhang
Nana Han
Chengyin Shi
Xiuhua Wang
机构
[1] Chinese Academy of Fishery Sciences,Key Laboratory of Marine Fishery Resources Sustainable Utilization, Ministry of Agriculture, Yellow Sea Fisheries Research Institute
[2] Shanghai Ocean University,College of Fisheries and Life Science
来源
Acta Oceanologica Sinica | 2012年 / 31卷
关键词
TaqMan; real-time PCR; detection; 16S rDNA;
D O I
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中图分类号
学科分类号
摘要
Edwardsiella tarda is one of the most important emerging pathogens in the global aquaculture industries. As such, an accurate diagnosis and quantitative analytical methods are urgently needed for this bacterium. In this study, primers and a TaqMan probe specific to the conservative sequences of the 16S rRNA gene of E. tarda were designed. The concentration of primers and TaqMan probe were optimized to 200 nmol/L and 120 nmol/L, respectively. The detection sensitivity of the FQPCR assay was determined to be as low as five copies of the target sequence per reaction using the pGEM-16S rDNA recombinant plasmid as a template, which was 100 times more sensitive than conventional PCR. A standard curve by plotting the threshold cycle values (y) against the common logarithmic copies (log10nc as x; nc is copy number) of pGEM-16S rDNA was generated. The results of intra- and inter-assay variability tests demonstrate that the established FQ-PCR method was highly reproducible. The assay was specific for E. tarda as it showed that there was no cross-reactivity to eight additional bacterial pathogen strains in aquaculture. Thus, the FQ-PCR assay has the potential for diagnostic purposes and for other applications, especially for the rapid detection and quantification of low-grade E. tarda infections.
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页码:140 / 148
页数:8
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共 80 条
[1]  
Bai F.(2009)Indirect enzyme-linked immunosorbent assay (ELISA) for rapid detection of Journal of Fishery Sciences of China 4 619-625
[2]  
Lan J.(2003)16S ribosomal RNA sequence-based identification of veterinary clinical bacteria J Vet Diagn Invest 15 465-469
[3]  
Wang Y.(2007)Two multiplex real-time TaqMan polymerase chain reaction systems for simultaneous detecting and serotyping of Diagn Micr Infec Dis 59 109-111
[4]  
Cai H.(2006)Characterization of J Fish Dis 29 541-547
[5]  
Archambault M.(2010) strains isolated from turbot, Dis Aquat Organ 90 55-61
[6]  
Prescott J. F.(2007) (L.) J Microbiol Meth 69 330-339
[7]  
Cao X.(2009)Evaluation of four polymerase chain reaction primer pairs for the detection of Aquac Res 40 1182-1190
[8]  
Jiang Z.(1998) in turbot Zoological Studies 37 169-176
[9]  
Wang Y.(1980)A detailed analysis of 16S ribosomal RNA gene segments for the diagnosis of pathogenic bacteria J Clin Microbiol 11 511-514
[10]  
Castro N.(1965)Multiplex nested-polymerase chain reaction for the simultaneous detection of Int Bull Bacteriol Nomencl Taxon 15 33-38