Cargando…
A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken
Selection for increased resistance to Salmonella colonisation and excretion could reduce the risk of foodborne Salmonella infection. In order to identify potential loci affecting resistance, differences in resistance were identified between the N and 6(1 )inbred lines and two QTL research performed....
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2005
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2697224/ https://www.ncbi.nlm.nih.gov/pubmed/16093014 http://dx.doi.org/10.1186/1297-9686-37-6-539 |
_version_ | 1782168308845379584 |
---|---|
author | Tilquin, Pierre Barrow, Paul A Marly, José Pitel, Frédérique Plisson-Petit, Florence Velge, Philippe Vignal, Alain Baret, Philippe V Bumstead, Nat Beaumont, Catherine |
author_facet | Tilquin, Pierre Barrow, Paul A Marly, José Pitel, Frédérique Plisson-Petit, Florence Velge, Philippe Vignal, Alain Baret, Philippe V Bumstead, Nat Beaumont, Catherine |
author_sort | Tilquin, Pierre |
collection | PubMed |
description | Selection for increased resistance to Salmonella colonisation and excretion could reduce the risk of foodborne Salmonella infection. In order to identify potential loci affecting resistance, differences in resistance were identified between the N and 6(1 )inbred lines and two QTL research performed. In an F2 cross, the animals were inoculated at one week of age with Salmonella enteritidis and cloacal swabs were carried out 4 and 5 wk post inoculation (thereafter called CSW4F2 and CSW4F2) and caecal contamination (CAECF2) was assessed 1 week later. The animals from the (N × 6(1)) × N backcross were inoculated at six weeks of age with Salmonella typhimurium and cloacal swabs were studied from wk 1 to 4 (thereafter called CSW1BC to CSW4BC). A total of 33 F(2 )and 46 backcross progeny were selectively genotyped for 103 and 135 microsatellite markers respectively. The analysis used least-squares-based and non-parametric interval mapping. Two genome-wise significant QTL were observed on Chromosome 1 for CSW2BC and on Chromosome 2 for CSW4F2, and four suggestive QTL for CSW5F2 on Chromosome 2, for CSW5F2 and CSW2BC on chromosome 5 and for CAECF2 on chromosome 16. These results suggest new regions of interest and the putative role of SAL1. |
format | Text |
id | pubmed-2697224 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2005 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-26972242009-06-16 A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken Tilquin, Pierre Barrow, Paul A Marly, José Pitel, Frédérique Plisson-Petit, Florence Velge, Philippe Vignal, Alain Baret, Philippe V Bumstead, Nat Beaumont, Catherine Genet Sel Evol Research Selection for increased resistance to Salmonella colonisation and excretion could reduce the risk of foodborne Salmonella infection. In order to identify potential loci affecting resistance, differences in resistance were identified between the N and 6(1 )inbred lines and two QTL research performed. In an F2 cross, the animals were inoculated at one week of age with Salmonella enteritidis and cloacal swabs were carried out 4 and 5 wk post inoculation (thereafter called CSW4F2 and CSW4F2) and caecal contamination (CAECF2) was assessed 1 week later. The animals from the (N × 6(1)) × N backcross were inoculated at six weeks of age with Salmonella typhimurium and cloacal swabs were studied from wk 1 to 4 (thereafter called CSW1BC to CSW4BC). A total of 33 F(2 )and 46 backcross progeny were selectively genotyped for 103 and 135 microsatellite markers respectively. The analysis used least-squares-based and non-parametric interval mapping. Two genome-wise significant QTL were observed on Chromosome 1 for CSW2BC and on Chromosome 2 for CSW4F2, and four suggestive QTL for CSW5F2 on Chromosome 2, for CSW5F2 and CSW2BC on chromosome 5 and for CAECF2 on chromosome 16. These results suggest new regions of interest and the putative role of SAL1. BioMed Central 2005-09-15 /pmc/articles/PMC2697224/ /pubmed/16093014 http://dx.doi.org/10.1186/1297-9686-37-6-539 Text en Copyright © 2005 INRA, EDP Sciences |
spellingShingle | Research Tilquin, Pierre Barrow, Paul A Marly, José Pitel, Frédérique Plisson-Petit, Florence Velge, Philippe Vignal, Alain Baret, Philippe V Bumstead, Nat Beaumont, Catherine A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken |
title | A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken |
title_full | A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken |
title_fullStr | A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken |
title_full_unstemmed | A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken |
title_short | A genome scan for quantitative trait loci affecting the Salmonella carrier-state in the chicken |
title_sort | genome scan for quantitative trait loci affecting the salmonella carrier-state in the chicken |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2697224/ https://www.ncbi.nlm.nih.gov/pubmed/16093014 http://dx.doi.org/10.1186/1297-9686-37-6-539 |
work_keys_str_mv | AT tilquinpierre agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT barrowpaula agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT marlyjose agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT pitelfrederique agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT plissonpetitflorence agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT velgephilippe agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT vignalalain agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT baretphilippev agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT bumsteadnat agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT beaumontcatherine agenomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT tilquinpierre genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT barrowpaula genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT marlyjose genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT pitelfrederique genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT plissonpetitflorence genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT velgephilippe genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT vignalalain genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT baretphilippev genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT bumsteadnat genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken AT beaumontcatherine genomescanforquantitativetraitlociaffectingthesalmonellacarrierstateinthechicken |