Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds

The quantitative real time-PCR (QRT-PCR) is a very sensitive method used to quantify mRNA level in gene expression analysis. Combining amplification, detection and quantification in a single step, allows a more accurate measurement compared to the traditional PCR end point analysis (Pfaffl, 2001; Bu...

Full description

Bibliographic Details
Main Authors: M. Cagnazzo, S. Braglia, R. Davoli
Format: Article
Language:English
Published: Taylor & Francis Group 2010-01-01
Series:Italian Journal of Animal Science
Subjects:
Online Access:http://www.aspajournal.it/index.php/ijas/article/view/664
_version_ 1818027988644528128
author M. Cagnazzo
S. Braglia
R. Davoli
author_facet M. Cagnazzo
S. Braglia
R. Davoli
author_sort M. Cagnazzo
collection DOAJ
description The quantitative real time-PCR (QRT-PCR) is a very sensitive method used to quantify mRNA level in gene expression analysis. Combining amplification, detection and quantification in a single step, allows a more accurate measurement compared to the traditional PCR end point analysis (Pfaffl, 2001; Bustin, 2002).
first_indexed 2024-12-10T04:56:39Z
format Article
id doaj.art-029e97aaf5624ef0ab77a1d69e1d9379
institution Directory Open Access Journal
issn 1594-4077
1828-051X
language English
last_indexed 2024-12-10T04:56:39Z
publishDate 2010-01-01
publisher Taylor & Francis Group
record_format Article
series Italian Journal of Animal Science
spelling doaj.art-029e97aaf5624ef0ab77a1d69e1d93792022-12-22T02:01:29ZengTaylor & Francis GroupItalian Journal of Animal Science1594-40771828-051X2010-01-0142s919310.4081/ijas.2005.2s.91Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breedsM. CagnazzoS. BragliaR. DavoliThe quantitative real time-PCR (QRT-PCR) is a very sensitive method used to quantify mRNA level in gene expression analysis. Combining amplification, detection and quantification in a single step, allows a more accurate measurement compared to the traditional PCR end point analysis (Pfaffl, 2001; Bustin, 2002).http://www.aspajournal.it/index.php/ijas/article/view/664quantitative real time-PCR, gene expression, pig embryos, skeletal muscle genes
spellingShingle M. Cagnazzo
S. Braglia
R. Davoli
Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds
Italian Journal of Animal Science
quantitative real time-PCR, gene expression, pig embryos, skeletal muscle genes
title Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds
title_full Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds
title_fullStr Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds
title_full_unstemmed Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds
title_short Quantitative Real Time PCR approach to study gene expression profile during prenatal growth of skeletal muscle in pig of Duroc and Pietrain breeds
title_sort quantitative real time pcr approach to study gene expression profile during prenatal growth of skeletal muscle in pig of duroc and pietrain breeds
topic quantitative real time-PCR, gene expression, pig embryos, skeletal muscle genes
url http://www.aspajournal.it/index.php/ijas/article/view/664
work_keys_str_mv AT mcagnazzo quantitativerealtimepcrapproachtostudygeneexpressionprofileduringprenatalgrowthofskeletalmuscleinpigofdurocandpietrainbreeds
AT sbraglia quantitativerealtimepcrapproachtostudygeneexpressionprofileduringprenatalgrowthofskeletalmuscleinpigofdurocandpietrainbreeds
AT rdavoli quantitativerealtimepcrapproachtostudygeneexpressionprofileduringprenatalgrowthofskeletalmuscleinpigofdurocandpietrainbreeds