Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.

A method based on Melting Temperature analysis of Hypervariable regions (HVR) of S1 gene within a RT-qPCR was developed to detect different genotypes of avian infectious bronchitis virus (IBV) and identify the Mass genotype. The method was able to rapidly identify the Mass genotype among IBV field isolates, vaccine attenuated strains and reference M41 strain in allantoic liquid and also directly in tissues. The RT-qPCR developed detected the virus in both tracheal and pulmonary samples from M41-infected or H120-infected birds, in a larger post-infection period compared to detection by standard method of virus isolation. RT-qPCR method tested provided a sensitivity and rapid approach for screening on IBV detection and Mass genotyping from IBV isolates.

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Bibliographic Details
Main Authors: OKINO, C. H., MONTASSIER, M. F. de, OLIVEIRA, A. P. de, MONTASSIER, H. J.
Other Authors: CINTIA HIROMI OKINO, CPPSE; Maria de Fátima Silva Montassier, UNESP; Andressa Peres de Oliveira, UNESP; Helio José Montassier, UNESP.
Format: Artigo de periódico biblioteca
Language:English
eng
Published: 2018-08-28
Subjects:Bronquite, Infectious bronchitis, Bronchitis, Infectious bronchitis virus, Birds,
Online Access:http://www.alice.cnptia.embrapa.br/alice/handle/doc/1094600
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spelling dig-alice-doc-10946002019-01-16T00:25:48Z Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I. OKINO, C. H. MONTASSIER, M. F. de OLIVEIRA, A. P. de MONTASSIER, H. J. CINTIA HIROMI OKINO, CPPSE; Maria de Fátima Silva Montassier, UNESP; Andressa Peres de Oliveira, UNESP; Helio José Montassier, UNESP. Bronquite Infectious bronchitis Bronchitis Infectious bronchitis virus Birds A method based on Melting Temperature analysis of Hypervariable regions (HVR) of S1 gene within a RT-qPCR was developed to detect different genotypes of avian infectious bronchitis virus (IBV) and identify the Mass genotype. The method was able to rapidly identify the Mass genotype among IBV field isolates, vaccine attenuated strains and reference M41 strain in allantoic liquid and also directly in tissues. The RT-qPCR developed detected the virus in both tracheal and pulmonary samples from M41-infected or H120-infected birds, in a larger post-infection period compared to detection by standard method of virus isolation. RT-qPCR method tested provided a sensitivity and rapid approach for screening on IBV detection and Mass genotyping from IBV isolates. 2019-01-16T00:25:42Z 2019-01-16T00:25:42Z 2018-08-28 2018 2019-01-16T00:25:42Z Artigo de periódico Veterinary Medical Science, v. 80, p. 725-730, fev. 2018. http://www.alice.cnptia.embrapa.br/alice/handle/doc/1094600 en eng openAccess
institution EMBRAPA
collection DSpace
country Brasil
countrycode BR
component Bibliográfico
access En linea
databasecode dig-alice
tag biblioteca
region America del Sur
libraryname Sistema de bibliotecas de EMBRAPA
language English
eng
topic Bronquite
Infectious bronchitis
Bronchitis
Infectious bronchitis virus
Birds
Bronquite
Infectious bronchitis
Bronchitis
Infectious bronchitis virus
Birds
spellingShingle Bronquite
Infectious bronchitis
Bronchitis
Infectious bronchitis virus
Birds
Bronquite
Infectious bronchitis
Bronchitis
Infectious bronchitis virus
Birds
OKINO, C. H.
MONTASSIER, M. F. de
OLIVEIRA, A. P. de
MONTASSIER, H. J.
Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.
description A method based on Melting Temperature analysis of Hypervariable regions (HVR) of S1 gene within a RT-qPCR was developed to detect different genotypes of avian infectious bronchitis virus (IBV) and identify the Mass genotype. The method was able to rapidly identify the Mass genotype among IBV field isolates, vaccine attenuated strains and reference M41 strain in allantoic liquid and also directly in tissues. The RT-qPCR developed detected the virus in both tracheal and pulmonary samples from M41-infected or H120-infected birds, in a larger post-infection period compared to detection by standard method of virus isolation. RT-qPCR method tested provided a sensitivity and rapid approach for screening on IBV detection and Mass genotyping from IBV isolates.
author2 CINTIA HIROMI OKINO, CPPSE; Maria de Fátima Silva Montassier, UNESP; Andressa Peres de Oliveira, UNESP; Helio José Montassier, UNESP.
author_facet CINTIA HIROMI OKINO, CPPSE; Maria de Fátima Silva Montassier, UNESP; Andressa Peres de Oliveira, UNESP; Helio José Montassier, UNESP.
OKINO, C. H.
MONTASSIER, M. F. de
OLIVEIRA, A. P. de
MONTASSIER, H. J.
format Artigo de periódico
topic_facet Bronquite
Infectious bronchitis
Bronchitis
Infectious bronchitis virus
Birds
author OKINO, C. H.
MONTASSIER, M. F. de
OLIVEIRA, A. P. de
MONTASSIER, H. J.
author_sort OKINO, C. H.
title Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.
title_short Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.
title_full Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.
title_fullStr Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.
title_full_unstemmed Rapid detection and differentiation of avian infectious bronchitis virus: an application of Mass genotype by melting temperature analysis in RT-qPCR using SYBR Green I.
title_sort rapid detection and differentiation of avian infectious bronchitis virus: an application of mass genotype by melting temperature analysis in rt-qpcr using sybr green i.
publishDate 2018-08-28
url http://www.alice.cnptia.embrapa.br/alice/handle/doc/1094600
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