| Literature DB >> 29061929 |
Hemant Naikare1, Daniela Bruno2, Debabrata Mahapatra3, Alesia Reinisch4, Russell Raleigh5, Robert Sprowls6.
Abstract
The objective of this study was to develop and validate a Taqman real-time PCR assay for the detection of Mycoplasma bovis (M. bovis). Unique primers targeting the highly conserved house-keeping gene (uvrC) were designed and the probe sequence was derived from a previously published microarray study. There was 100% agreement in the outcome between our assay and the other two published assays for M. bovis detection. The analytical limit of detection of our assay is 83 copies of the uvrC gene. This assay was validated on a total of 214 bovine clinical specimens that were submitted to the Texas A&M Veterinary Medical Diagnostic Laboratory (TVMDL), Texas, USA. The specificity of the assay was assessed to be 100% since no cross-reactivity occurred with 22 other bacterial and other Mycoplasma species. We conclude that the uvrC gene serves as a good and reliable diagnostic marker for the accurate and rapid detection of M. bovis from a wider variety of specimen matrices.Entities:
Keywords: Mycoplasma bovis; Taqman real-time PCR; cattle; uvrC gene
Year: 2015 PMID: 29061929 PMCID: PMC5644610 DOI: 10.3390/vetsci2010032
Source DB: PubMed Journal: Vet Sci ISSN: 2306-7381
Sequences of primers and probes used in this study.
| Gene Target | Oligo | Sequence (5'→3') | Reference | Product Size |
|---|---|---|---|---|
| Forward Primer | GAG AAT GCT TCA GTA TTT TGA CGG | This study | 170 bp | |
| Reverse Primer | CAA AAG CAA AAT GTT AAA TTC AGG | This study | ||
| Probe | (6 FAM) CAT ATA TAA GTG AGA CTA ACT TAT T(MGB) | [ | ||
| F2024 | TCT AAT TTT TTC ATC ATC GCT AAT GC | [ | 112 bp | |
| R2135 | TCA GGC CTT TGC TAC AAT GAA C | |||
| M.bov | (FAM) AAC TGC ATC ATA TCA CAT ACT (MGB) | |||
| 16S rRNA | Forward Primer | CCT TTT AGA TTG GGA TAG CGG ATG | [ | 360 bp |
| Reverse Primer | CCG TCA AGG TAG CAT CAT TTC CTA T |
Mycoplasma sp. and other bacterial species tested for specificity of the real-time PCR assay.
| Number | Species | Strain | Real-Time PCR |
|---|---|---|---|
| 1 | ATCC 25523 | Positive | |
| 2 | ATCC 27369 | Positive | |
| 3 | Field isolate | Positive | |
| 4 | ATCC 29103 | Negative | |
| 5 | ATCC 29418 | Negative | |
| 6 | ATCC 23838 | Negative | |
| 7 | ATCC 27748 | Negative | |
| 8 | Field isolate | Negative | |
| 9 | Field isolate | Negative | |
| 10 | Field isolate | Negative | |
| 11 | Field isolate | Negative | |
| 12 | Field isolate | Negative | |
| 13 | Field isolate | Negative | |
| 14 | Field isolate | Negative | |
| 15 | Field isolate | Negative | |
| 16 | Field isolate | Negative | |
| 17 | Field isolate | Negative | |
| 18 | Field isolate | Negative | |
| 19 | Field isolate | Negative | |
| 20 | Field isolate | Negative | |
| 21 | Field isolate | Negative | |
| 22 | Field isolate | Negative | |
| 23 | Field isolate | Negative | |
| 24 | Field isolate | Negative | |
| 25 | Field isolate | Negative |
Figure 1Relationship between the amount of template DNA copies (Log CO) in the Taqman assay and the mean threshold cycle (Ct). Slope: −3.448840; intercept: 43.393936; R2 = 0.996695.
Comparison between our Taqman PCR assay, conventional PCR and Clothier et al. Taqman assay.
| Specimen | Our Taqman PCR Assay | Conventional PCR | Clothier | |||
|---|---|---|---|---|---|---|
| Positive | Negative | Positive | Negative | Positive | Negative | |
| Lung ( | 42 | 3 | 42 | 3 | 42 | 3 |
| Milk ( | 15 | 63 | 15 | 63 | 15 | 63 |
| Nasal swab ( | 22 | 56 | 22 | 56 | 22 | 56 |
| Joint fluid ( | 2 | 3 | 2 | 3 | 2 | 3 |
| Semen ( | 1 | 7 | 1 | 7 | 1 | 7 |
| Total ( | 82 | 132 | 82 | 132 | 82 | 132 |
n = number of specimen of each kind of specimen matrix tested.
Comparison between culture and our Taqman PCR assay.
| Specimen | Culture | Our Taqman PCR Assay | ||
|---|---|---|---|---|
| Positive | Negative | Positive | Negative | |
| Lung ( | 17 | 23 | 39 | 1 |
| Milk( | 4 | 14 | 4 | 14 |
| Swabs( | 4 | 6 | 6 | 4 |
| Joint Fluid ( | 0 | 3 | 1 | 2 |
| Total ( | 25 | 46 | 50 | 21 |