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A first generation whole genome RH map of the river buffalo with comparison to domestic cattle
BACKGROUND: The recently constructed river buffalo whole-genome radiation hybrid panel (BBURH(5000)) has already been used to generate preliminary radiation hybrid (RH) maps for several chromosomes, and buffalo-bovine comparative chromosome maps have been constructed. Here, we present the first-gene...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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BioMed Central
2008
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2625372/ https://www.ncbi.nlm.nih.gov/pubmed/19108729 http://dx.doi.org/10.1186/1471-2164-9-631 |
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author | Amaral, M Elisabete J Grant, Jason R Riggs, Penny K Stafuzza, Nedenia B Filho, Edson A Rodrigues Goldammer, Tom Weikard, Rosemarie Brunner, Ronald M Kochan, Kelli J Greco, Anthony J Jeong, Jooha Cai, Zhipeng Lin, Guohui Prasad, Aparna Kumar, Satish Saradhi, G Pardha Mathew, Boby Kumar, M Aravind Miziara, Melissa N Mariani, Paola Caetano, Alexandre R Galvão, Stephan R Tantia, Madhu S Vijh, Ramesh K Mishra, Bina Kumar, ST Bharani Pelai, Vanderlei A Santana, Andre M Fornitano, Larissa C Jones, Brittany C Tonhati, Humberto Moore, Stephen Stothard, Paul Womack, James E |
author_facet | Amaral, M Elisabete J Grant, Jason R Riggs, Penny K Stafuzza, Nedenia B Filho, Edson A Rodrigues Goldammer, Tom Weikard, Rosemarie Brunner, Ronald M Kochan, Kelli J Greco, Anthony J Jeong, Jooha Cai, Zhipeng Lin, Guohui Prasad, Aparna Kumar, Satish Saradhi, G Pardha Mathew, Boby Kumar, M Aravind Miziara, Melissa N Mariani, Paola Caetano, Alexandre R Galvão, Stephan R Tantia, Madhu S Vijh, Ramesh K Mishra, Bina Kumar, ST Bharani Pelai, Vanderlei A Santana, Andre M Fornitano, Larissa C Jones, Brittany C Tonhati, Humberto Moore, Stephen Stothard, Paul Womack, James E |
author_sort | Amaral, M Elisabete J |
collection | PubMed |
description | BACKGROUND: The recently constructed river buffalo whole-genome radiation hybrid panel (BBURH(5000)) has already been used to generate preliminary radiation hybrid (RH) maps for several chromosomes, and buffalo-bovine comparative chromosome maps have been constructed. Here, we present the first-generation whole genome RH map (WG-RH) of the river buffalo generated from cattle-derived markers. The RH maps aligned to bovine genome sequence assembly Btau_4.0, providing valuable comparative mapping information for both species. RESULTS: A total of 3990 markers were typed on the BBURH(5000 )panel, of which 3072 were cattle derived SNPs. The remaining 918 were classified as cattle sequence tagged site (STS), including coding genes, ESTs, and microsatellites. Average retention frequency per chromosome was 27.3% calculated with 3093 scorable markers distributed in 43 linkage groups covering all autosomes (24) and the X chromosomes at a LOD ≥ 8. The estimated total length of the WG-RH map is 36,933 cR(5000). Fewer than 15% of the markers (472) could not be placed within any linkage group at a LOD score ≥ 8. Linkage group order for each chromosome was determined by incorporation of markers previously assigned by FISH and by alignment with the bovine genome sequence assembly (Btau_4.0). CONCLUSION: We obtained radiation hybrid chromosome maps for the entire river buffalo genome based on cattle-derived markers. The alignments of our RH maps to the current bovine genome sequence assembly (Btau_4.0) indicate regions of possible rearrangements between the chromosomes of both species. The river buffalo represents an important agricultural species whose genetic improvement has lagged behind other species due to limited prior genomic characterization. We present the first-generation RH map which provides a more extensive resource for positional candidate cloning of genes associated with complex traits and also for large-scale physical mapping of the river buffalo genome. |
format | Text |
id | pubmed-2625372 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2008 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-26253722009-01-14 A first generation whole genome RH map of the river buffalo with comparison to domestic cattle Amaral, M Elisabete J Grant, Jason R Riggs, Penny K Stafuzza, Nedenia B Filho, Edson A Rodrigues Goldammer, Tom Weikard, Rosemarie Brunner, Ronald M Kochan, Kelli J Greco, Anthony J Jeong, Jooha Cai, Zhipeng Lin, Guohui Prasad, Aparna Kumar, Satish Saradhi, G Pardha Mathew, Boby Kumar, M Aravind Miziara, Melissa N Mariani, Paola Caetano, Alexandre R Galvão, Stephan R Tantia, Madhu S Vijh, Ramesh K Mishra, Bina Kumar, ST Bharani Pelai, Vanderlei A Santana, Andre M Fornitano, Larissa C Jones, Brittany C Tonhati, Humberto Moore, Stephen Stothard, Paul Womack, James E BMC Genomics Research Article BACKGROUND: The recently constructed river buffalo whole-genome radiation hybrid panel (BBURH(5000)) has already been used to generate preliminary radiation hybrid (RH) maps for several chromosomes, and buffalo-bovine comparative chromosome maps have been constructed. Here, we present the first-generation whole genome RH map (WG-RH) of the river buffalo generated from cattle-derived markers. The RH maps aligned to bovine genome sequence assembly Btau_4.0, providing valuable comparative mapping information for both species. RESULTS: A total of 3990 markers were typed on the BBURH(5000 )panel, of which 3072 were cattle derived SNPs. The remaining 918 were classified as cattle sequence tagged site (STS), including coding genes, ESTs, and microsatellites. Average retention frequency per chromosome was 27.3% calculated with 3093 scorable markers distributed in 43 linkage groups covering all autosomes (24) and the X chromosomes at a LOD ≥ 8. The estimated total length of the WG-RH map is 36,933 cR(5000). Fewer than 15% of the markers (472) could not be placed within any linkage group at a LOD score ≥ 8. Linkage group order for each chromosome was determined by incorporation of markers previously assigned by FISH and by alignment with the bovine genome sequence assembly (Btau_4.0). CONCLUSION: We obtained radiation hybrid chromosome maps for the entire river buffalo genome based on cattle-derived markers. The alignments of our RH maps to the current bovine genome sequence assembly (Btau_4.0) indicate regions of possible rearrangements between the chromosomes of both species. The river buffalo represents an important agricultural species whose genetic improvement has lagged behind other species due to limited prior genomic characterization. We present the first-generation RH map which provides a more extensive resource for positional candidate cloning of genes associated with complex traits and also for large-scale physical mapping of the river buffalo genome. BioMed Central 2008-12-24 /pmc/articles/PMC2625372/ /pubmed/19108729 http://dx.doi.org/10.1186/1471-2164-9-631 Text en Copyright © 2008 Amaral et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Amaral, M Elisabete J Grant, Jason R Riggs, Penny K Stafuzza, Nedenia B Filho, Edson A Rodrigues Goldammer, Tom Weikard, Rosemarie Brunner, Ronald M Kochan, Kelli J Greco, Anthony J Jeong, Jooha Cai, Zhipeng Lin, Guohui Prasad, Aparna Kumar, Satish Saradhi, G Pardha Mathew, Boby Kumar, M Aravind Miziara, Melissa N Mariani, Paola Caetano, Alexandre R Galvão, Stephan R Tantia, Madhu S Vijh, Ramesh K Mishra, Bina Kumar, ST Bharani Pelai, Vanderlei A Santana, Andre M Fornitano, Larissa C Jones, Brittany C Tonhati, Humberto Moore, Stephen Stothard, Paul Womack, James E A first generation whole genome RH map of the river buffalo with comparison to domestic cattle |
title | A first generation whole genome RH map of the river buffalo with comparison to domestic cattle |
title_full | A first generation whole genome RH map of the river buffalo with comparison to domestic cattle |
title_fullStr | A first generation whole genome RH map of the river buffalo with comparison to domestic cattle |
title_full_unstemmed | A first generation whole genome RH map of the river buffalo with comparison to domestic cattle |
title_short | A first generation whole genome RH map of the river buffalo with comparison to domestic cattle |
title_sort | first generation whole genome rh map of the river buffalo with comparison to domestic cattle |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2625372/ https://www.ncbi.nlm.nih.gov/pubmed/19108729 http://dx.doi.org/10.1186/1471-2164-9-631 |
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