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Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle
A joint analysis of five paternal half-sib Holstein families that were part of two different granddaughter designs (ADR- or Inra-design) was carried out for five milk production traits and somatic cell score in order to conduct a QTL confirmation study and to increase the experimental power. Data we...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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BioMed Central
2003
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2732702/ https://www.ncbi.nlm.nih.gov/pubmed/12729552 http://dx.doi.org/10.1186/1297-9686-35-3-319 |
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author | Bennewitz, Jörn Reinsch, Norbert Grohs, Cécile Levéziel, Hubert Malafosse, Alain Thomsen, Hauke Xu, Ningying Looft, Christian Kühn, Christa Brockmann, Gudrun A Schwerin, Manfred Weimann, Christina Hiendleder, Stefan Erhardt, Georg Medjugorac, Ivica Russ, Ingolf Förster, Martin Brenig, Bertram Reinhardt, Fritz Reents, Reinhard Averdunk, Gottfried Blümel, Jürgen Boichard, Didier Kalm, Ernst |
author_facet | Bennewitz, Jörn Reinsch, Norbert Grohs, Cécile Levéziel, Hubert Malafosse, Alain Thomsen, Hauke Xu, Ningying Looft, Christian Kühn, Christa Brockmann, Gudrun A Schwerin, Manfred Weimann, Christina Hiendleder, Stefan Erhardt, Georg Medjugorac, Ivica Russ, Ingolf Förster, Martin Brenig, Bertram Reinhardt, Fritz Reents, Reinhard Averdunk, Gottfried Blümel, Jürgen Boichard, Didier Kalm, Ernst |
author_sort | Bennewitz, Jörn |
collection | PubMed |
description | A joint analysis of five paternal half-sib Holstein families that were part of two different granddaughter designs (ADR- or Inra-design) was carried out for five milk production traits and somatic cell score in order to conduct a QTL confirmation study and to increase the experimental power. Data were exchanged in a coded and standardised form. The combined data set (JOINT-design) consisted of on average 231 sires per grandsire. Genetic maps were calculated for 133 markers distributed over nine chromosomes. QTL analyses were performed separately for each design and each trait. The results revealed QTL for milk production on chromosome 14, for milk yield on chromosome 5, and for fat content on chromosome 19 in both the ADR- and the Inra-design (confirmed within this study). Some QTL could only be mapped in either the ADR- or in the Inra-design (not confirmed within this study). Additional QTL previously undetected in the single designs were mapped in the JOINT-design for fat yield (chromosome 19 and 26), protein yield (chromosome 26), protein content (chromosome 5), and somatic cell score (chromosome 2 and 19) with genomewide significance. This study demonstrated the potential benefits of a combined analysis of data from different granddaughter designs. |
format | Text |
id | pubmed-2732702 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2003 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-27327022009-08-27 Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle Bennewitz, Jörn Reinsch, Norbert Grohs, Cécile Levéziel, Hubert Malafosse, Alain Thomsen, Hauke Xu, Ningying Looft, Christian Kühn, Christa Brockmann, Gudrun A Schwerin, Manfred Weimann, Christina Hiendleder, Stefan Erhardt, Georg Medjugorac, Ivica Russ, Ingolf Förster, Martin Brenig, Bertram Reinhardt, Fritz Reents, Reinhard Averdunk, Gottfried Blümel, Jürgen Boichard, Didier Kalm, Ernst Genet Sel Evol Research A joint analysis of five paternal half-sib Holstein families that were part of two different granddaughter designs (ADR- or Inra-design) was carried out for five milk production traits and somatic cell score in order to conduct a QTL confirmation study and to increase the experimental power. Data were exchanged in a coded and standardised form. The combined data set (JOINT-design) consisted of on average 231 sires per grandsire. Genetic maps were calculated for 133 markers distributed over nine chromosomes. QTL analyses were performed separately for each design and each trait. The results revealed QTL for milk production on chromosome 14, for milk yield on chromosome 5, and for fat content on chromosome 19 in both the ADR- and the Inra-design (confirmed within this study). Some QTL could only be mapped in either the ADR- or in the Inra-design (not confirmed within this study). Additional QTL previously undetected in the single designs were mapped in the JOINT-design for fat yield (chromosome 19 and 26), protein yield (chromosome 26), protein content (chromosome 5), and somatic cell score (chromosome 2 and 19) with genomewide significance. This study demonstrated the potential benefits of a combined analysis of data from different granddaughter designs. BioMed Central 2003-05-15 /pmc/articles/PMC2732702/ /pubmed/12729552 http://dx.doi.org/10.1186/1297-9686-35-3-319 Text en Copyright © 2003 INRA, EDP Sciences |
spellingShingle | Research Bennewitz, Jörn Reinsch, Norbert Grohs, Cécile Levéziel, Hubert Malafosse, Alain Thomsen, Hauke Xu, Ningying Looft, Christian Kühn, Christa Brockmann, Gudrun A Schwerin, Manfred Weimann, Christina Hiendleder, Stefan Erhardt, Georg Medjugorac, Ivica Russ, Ingolf Förster, Martin Brenig, Bertram Reinhardt, Fritz Reents, Reinhard Averdunk, Gottfried Blümel, Jürgen Boichard, Didier Kalm, Ernst Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle |
title | Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle |
title_full | Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle |
title_fullStr | Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle |
title_full_unstemmed | Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle |
title_short | Combined analysis of data from two granddaughter designs: A simple strategy for QTL confirmation and increasing experimental power in dairy cattle |
title_sort | combined analysis of data from two granddaughter designs: a simple strategy for qtl confirmation and increasing experimental power in dairy cattle |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2732702/ https://www.ncbi.nlm.nih.gov/pubmed/12729552 http://dx.doi.org/10.1186/1297-9686-35-3-319 |
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