| Literature DB >> 23888384 |
Dietrich Mäde1, Katja Trübner, Eckehard Neubert, Marina Höhne, Reimar Johne.
Abstract
During September/October 2012, a norovirus gastroenteritis outbreak affecting about 11,000 people occurred in Germany. Epidemiological studies suggested that frozen strawberries represented the vehicle of infection. We describe here the analysis of frozen strawberries for the presence of norovirus. Samples were taken by applying a stratified subsampling scheme. Two different methods for virus extraction from strawberries were compared. First, viruses were eluted from strawberries under alkaline conditions and concentrated using a polyethylene glycol precipitation. Second, ultrafiltration was applied for concentration of viruses rinsed off of the berries. In both cases, RNA was extracted and analyzed by real-time RT-PCR. Application of the ultrafiltration method generally resulted in a lower detection rate. Noroviruses were detected in 7/11 samples derived from the lot of strawberries implicated in the outbreak using the precipitation method. Typing of norovirus revealed three different genotypes including a combination of norovirus genotype II.16 (viral polymerase) and II.13 (viral capsid). This genotype combination was also found in some of the patients that were involved in the outbreak, but that had not been reported in Germany so far. In conclusion, heterogeneously distributed noroviruses in frozen strawberries can be detected by applying an optimized combination of sampling procedures, virus extraction methods, and real-time RT-PCR protocols. The detection of several different genotypes in the strawberries may suggest contamination from sewage rather than from a single infected food handler.Entities:
Year: 2013 PMID: 23888384 PMCID: PMC3753465 DOI: 10.1007/s12560-013-9118-0
Source DB: PubMed Journal: Food Environ Virol ISSN: 1867-0334 Impact factor: 2.778
The results of real-time RT-PCR analysis of strawberry samples after application of two different virus concentration procedures
| Sample number | Lot | Subsample | Results of precipitation method | Results of ultrafiltration method |
|---|---|---|---|---|
| 1 | A | 1 | +(GI and GII) [GI.9]a | +(GII) |
| 2 | A | 1 | +(GII) | +(GII) |
| 2 | +(GII) | – | ||
| 3 | +(GII) | – | ||
| 3 | A | 1 | – | – |
| 4 | A | 1 | +(GII) | – |
| 2 | +(GII) [GII.16/II.13]a/b | – | ||
| 5 | A | 1 | – | – |
| 2 | – | – | ||
| 3 | – | – | ||
| 6 | A | 1 | – | – |
| 2 | +(GI and GII) | +(GII) | ||
| 3 | – | – | ||
| 7 | A | 1 | +(GII) | n.d. |
| 2 | +(GI and GII) | n.d. | ||
| 3 | – | n.d. | ||
| 8 | A | 1 | – | n.d. |
| 2 | – | n.d. | ||
| 3 | – | n.d. | ||
| 9 | A | 1 | +(GII) [GII.6]a | n.d. |
| 2 | +(GII) | n.d. | ||
| 3 | +(GII) | n.d. | ||
| 10 | A | 1 | – | n.d. |
| 2 | – | n.d. | ||
| 3 | – | n.d. | ||
| 11 | A | 1 | +(GII) | n.d. |
| 2 | +(GII) | n.d. | ||
| 3 | +(GII) | n.d. | ||
| 12 | B | 1 | – | – |
| 13 | B | 1 | – | – |
| 14 | B | 1 | – | – |
| 2 | – | – | ||
| 3 | – | – | ||
| 15 | C | 1 | – | – |
| 2 | – | – | ||
| 3 | – | – | ||
| 16 | D | 1 | – | – |
| 2 | – | – | ||
| 3 | – | – |
n.d. not done
aIndicates samples, for which norovirus sequences could be generated by subsequent nucleic acid sequence analysis
bRandom amplification of RNA was applied to an aliquot of the RNA before nested RT-PCR amplification and sequencing
Oligonucleotides used in the real-time RT-PCR assays
| Assay | Primer | Sequence (5′–3′) | Working concentration (nmol/L) | References |
|---|---|---|---|---|
| Norovirus GI | QNIF4 | CGC TGG ATG CGN TTC CAT | 900 | da Silva et al. ( |
| NV1LCR | CCT TAG ACG CCA TCA TCA TTT AC | 900 | Svraka et al. ( | |
| NVGG1p | (FAM)-TGG ACA GGA GAY CGC RAT CT-(TAMRA) | 250 | Svraka et al. ( | |
| Norovirus GII and MS2 (duplex) | QNIF2 | ATG TTC AGR TGG ATG AGR TTC TCW GA | 900 | Loisy et al. ( |
| COG2R | TCG ACG CCA TCT TCA TTC ACA | 900 | Kageyama et al. ( | |
| QNIFS | (FAM)-AGC ACG TGG GAG GGC GAT CG-(TAMRA) | 250 | Loisy et al. ( | |
| MS2-TM2-F | GGC TGC TCG CGG ATA CCC | 200 | Dreier et al. ( | |
| MS2-TM2-R | TGA GGG AAT GTG GGA ACC G | 700 | Dreier et al. ( | |
| MS2-TM2 | (JOE)-ACC TCG GGT TTC CGT CTT GCT CGT-(BBQ) | 200 | Dreier et al. ( |
Y = C/T; R = A/G; W = A/T