Cargando…

Development of a novel detection system for microbes from bovine diarrhea by real-time PCR

Diarrhea in cattle is one of the most economically costly disorders, decreasing milk production and weight gain. In the present study, we established a novel simultaneous detection system using TaqMan real-time PCR designed as a system for detection of microbes from bovine diarrhea using real-time P...

Descripción completa

Detalles Bibliográficos
Autores principales: TSUCHIAKA, Shinobu, MASUDA, Tsuneyuki, SUGIMURA, Satoshi, KOBAYASHI, Suguru, KOMATSU, Natsumi, NAGAI, Makoto, OMATSU, Tsutomu, FURUYA, Tetsuya, OBA, Mami, KATAYAMA, Yukie, KANDA, Shuhei, YOKOYAMA, Tadashi, MIZUTANI, Tetsuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Japanese Society of Veterinary Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4829504/
https://www.ncbi.nlm.nih.gov/pubmed/26616156
http://dx.doi.org/10.1292/jvms.15-0552
_version_ 1782426747331936256
author TSUCHIAKA, Shinobu
MASUDA, Tsuneyuki
SUGIMURA, Satoshi
KOBAYASHI, Suguru
KOMATSU, Natsumi
NAGAI, Makoto
OMATSU, Tsutomu
FURUYA, Tetsuya
OBA, Mami
KATAYAMA, Yukie
KANDA, Shuhei
YOKOYAMA, Tadashi
MIZUTANI, Tetsuya
author_facet TSUCHIAKA, Shinobu
MASUDA, Tsuneyuki
SUGIMURA, Satoshi
KOBAYASHI, Suguru
KOMATSU, Natsumi
NAGAI, Makoto
OMATSU, Tsutomu
FURUYA, Tetsuya
OBA, Mami
KATAYAMA, Yukie
KANDA, Shuhei
YOKOYAMA, Tadashi
MIZUTANI, Tetsuya
author_sort TSUCHIAKA, Shinobu
collection PubMed
description Diarrhea in cattle is one of the most economically costly disorders, decreasing milk production and weight gain. In the present study, we established a novel simultaneous detection system using TaqMan real-time PCR designed as a system for detection of microbes from bovine diarrhea using real-time PCR (referred to as Dembo-PCR). Dembo-PCR simultaneously detects a total of 19 diarrhea-causing pathogens, including viruses, bacteria and protozoa. Specific primer–probe sets were newly designed for 7 pathogens and were synthesized on the basis of previous reports for 12 pathogens. Assays were optimized to react under the same reaction conditions. The PCR efficiency and correlation coefficient (R(2)) of standard curves for each assay were more than 80% and 0.9766, respectively. Furthermore, the sensitivity of Dembo-PCR in fecal sample analysis was measured with feces spiked with target pathogens or synthesized DNA that included specific nucleotide target regions. The resulting limits of detection (LOD) for virus-spiked samples, bacteria and DNA fragments were 0.16–1.6 TCID(50) (PFU/reaction), 1.3–13 CFU/reaction and 10–100 copies/reaction, respectively. All reactions showed high sensitivity in pathogen detection. A total of 8 fecal samples, collected from 6 diarrheic cattle, 1 diarrheic calf and 1 healthy cow, were tested using Dembo-PCR to validate the assay’s clinical performance. The results revealed that bovine coronavirus had infected all diarrheic adult cattle and that bovine torovirus had infected the diarrheic calf. These results suggest that Dembo-PCR may be a powerful tool for diagnosing infectious agents in cattle diarrhea.
format Online
Article
Text
id pubmed-4829504
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher The Japanese Society of Veterinary Science
record_format MEDLINE/PubMed
spelling pubmed-48295042016-04-13 Development of a novel detection system for microbes from bovine diarrhea by real-time PCR TSUCHIAKA, Shinobu MASUDA, Tsuneyuki SUGIMURA, Satoshi KOBAYASHI, Suguru KOMATSU, Natsumi NAGAI, Makoto OMATSU, Tsutomu FURUYA, Tetsuya OBA, Mami KATAYAMA, Yukie KANDA, Shuhei YOKOYAMA, Tadashi MIZUTANI, Tetsuya J Vet Med Sci Virology Diarrhea in cattle is one of the most economically costly disorders, decreasing milk production and weight gain. In the present study, we established a novel simultaneous detection system using TaqMan real-time PCR designed as a system for detection of microbes from bovine diarrhea using real-time PCR (referred to as Dembo-PCR). Dembo-PCR simultaneously detects a total of 19 diarrhea-causing pathogens, including viruses, bacteria and protozoa. Specific primer–probe sets were newly designed for 7 pathogens and were synthesized on the basis of previous reports for 12 pathogens. Assays were optimized to react under the same reaction conditions. The PCR efficiency and correlation coefficient (R(2)) of standard curves for each assay were more than 80% and 0.9766, respectively. Furthermore, the sensitivity of Dembo-PCR in fecal sample analysis was measured with feces spiked with target pathogens or synthesized DNA that included specific nucleotide target regions. The resulting limits of detection (LOD) for virus-spiked samples, bacteria and DNA fragments were 0.16–1.6 TCID(50) (PFU/reaction), 1.3–13 CFU/reaction and 10–100 copies/reaction, respectively. All reactions showed high sensitivity in pathogen detection. A total of 8 fecal samples, collected from 6 diarrheic cattle, 1 diarrheic calf and 1 healthy cow, were tested using Dembo-PCR to validate the assay’s clinical performance. The results revealed that bovine coronavirus had infected all diarrheic adult cattle and that bovine torovirus had infected the diarrheic calf. These results suggest that Dembo-PCR may be a powerful tool for diagnosing infectious agents in cattle diarrhea. The Japanese Society of Veterinary Science 2015-11-30 2016-03 /pmc/articles/PMC4829504/ /pubmed/26616156 http://dx.doi.org/10.1292/jvms.15-0552 Text en ©2016 The Japanese Society of Veterinary Science http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License.
spellingShingle Virology
TSUCHIAKA, Shinobu
MASUDA, Tsuneyuki
SUGIMURA, Satoshi
KOBAYASHI, Suguru
KOMATSU, Natsumi
NAGAI, Makoto
OMATSU, Tsutomu
FURUYA, Tetsuya
OBA, Mami
KATAYAMA, Yukie
KANDA, Shuhei
YOKOYAMA, Tadashi
MIZUTANI, Tetsuya
Development of a novel detection system for microbes from bovine diarrhea by real-time PCR
title Development of a novel detection system for microbes from bovine diarrhea by real-time PCR
title_full Development of a novel detection system for microbes from bovine diarrhea by real-time PCR
title_fullStr Development of a novel detection system for microbes from bovine diarrhea by real-time PCR
title_full_unstemmed Development of a novel detection system for microbes from bovine diarrhea by real-time PCR
title_short Development of a novel detection system for microbes from bovine diarrhea by real-time PCR
title_sort development of a novel detection system for microbes from bovine diarrhea by real-time pcr
topic Virology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4829504/
https://www.ncbi.nlm.nih.gov/pubmed/26616156
http://dx.doi.org/10.1292/jvms.15-0552
work_keys_str_mv AT tsuchiakashinobu developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT masudatsuneyuki developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT sugimurasatoshi developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT kobayashisuguru developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT komatsunatsumi developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT nagaimakoto developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT omatsutsutomu developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT furuyatetsuya developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT obamami developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT katayamayukie developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT kandashuhei developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT yokoyamatadashi developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr
AT mizutanitetsuya developmentofanoveldetectionsystemformicrobesfrombovinediarrheabyrealtimepcr