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A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening

BACKGROUND: A five-dimensional (5-D) clone pooling strategy for screening of bacterial artificial chromosome (BAC) clones with molecular markers utilizing highly-parallel Illumina GoldenGate assays and PCR facilitates high-throughput BAC clone and BAC contig anchoring on a genetic map. However, this...

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Autores principales: You, Frank M, Luo, Ming-Cheng, Xu, Kenong, Deal, Karin R, Anderson, Olin D, Dvorak, Jan
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3016418/
https://www.ncbi.nlm.nih.gov/pubmed/21129228
http://dx.doi.org/10.1186/1471-2164-11-692
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author You, Frank M
Luo, Ming-Cheng
Xu, Kenong
Deal, Karin R
Anderson, Olin D
Dvorak, Jan
author_facet You, Frank M
Luo, Ming-Cheng
Xu, Kenong
Deal, Karin R
Anderson, Olin D
Dvorak, Jan
author_sort You, Frank M
collection PubMed
description BACKGROUND: A five-dimensional (5-D) clone pooling strategy for screening of bacterial artificial chromosome (BAC) clones with molecular markers utilizing highly-parallel Illumina GoldenGate assays and PCR facilitates high-throughput BAC clone and BAC contig anchoring on a genetic map. However, this strategy occasionally needs manual PCR to deconvolute pools and identify truly positive clones. RESULTS: A new implementation is reported here for our previously reported clone pooling strategy. Row and column pools of BAC clones are divided into sub-pools with 1~2× genome coverage. All BAC pools are screened with Illumina's GoldenGate assay and the BAC pools are deconvoluted to identify individual positive clones. Putative positive BAC clones are then further analyzed to find positive clones on the basis of them being neighbours in a contig. An exhaustive search or brute force algorithm was designed for this deconvolution and integrated into a newly developed software tool, FPCBrowser, for analyzing clone pooling data. This algorithm was used with empirical data for 55 Illumina GoldenGate SNP assays detecting SNP markers mapped on Aegilops tauschii chromosome 2D and Ae. tauschii contig maps. Clones in single contigs were successfully assigned to 48 (87%) specific SNP markers on the map with 91% precision. CONCLUSION: A new implementation of 5-D BAC clone pooling strategy employing both GoldenGate assay screening and assembled BAC contigs is shown here to be a high-throughput, low cost, rapid, and feasible approach to screening BAC libraries and anchoring BAC clones and contigs on genetic maps. The software FPCBrowser with the integrated clone deconvolution algorithm has been developed and is downloadable at http://avena.pw.usda.gov/wheatD/fpcbrowser.shtml.
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spelling pubmed-30164182011-01-06 A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening You, Frank M Luo, Ming-Cheng Xu, Kenong Deal, Karin R Anderson, Olin D Dvorak, Jan BMC Genomics Methodology Article BACKGROUND: A five-dimensional (5-D) clone pooling strategy for screening of bacterial artificial chromosome (BAC) clones with molecular markers utilizing highly-parallel Illumina GoldenGate assays and PCR facilitates high-throughput BAC clone and BAC contig anchoring on a genetic map. However, this strategy occasionally needs manual PCR to deconvolute pools and identify truly positive clones. RESULTS: A new implementation is reported here for our previously reported clone pooling strategy. Row and column pools of BAC clones are divided into sub-pools with 1~2× genome coverage. All BAC pools are screened with Illumina's GoldenGate assay and the BAC pools are deconvoluted to identify individual positive clones. Putative positive BAC clones are then further analyzed to find positive clones on the basis of them being neighbours in a contig. An exhaustive search or brute force algorithm was designed for this deconvolution and integrated into a newly developed software tool, FPCBrowser, for analyzing clone pooling data. This algorithm was used with empirical data for 55 Illumina GoldenGate SNP assays detecting SNP markers mapped on Aegilops tauschii chromosome 2D and Ae. tauschii contig maps. Clones in single contigs were successfully assigned to 48 (87%) specific SNP markers on the map with 91% precision. CONCLUSION: A new implementation of 5-D BAC clone pooling strategy employing both GoldenGate assay screening and assembled BAC contigs is shown here to be a high-throughput, low cost, rapid, and feasible approach to screening BAC libraries and anchoring BAC clones and contigs on genetic maps. The software FPCBrowser with the integrated clone deconvolution algorithm has been developed and is downloadable at http://avena.pw.usda.gov/wheatD/fpcbrowser.shtml. BioMed Central 2010-12-06 /pmc/articles/PMC3016418/ /pubmed/21129228 http://dx.doi.org/10.1186/1471-2164-11-692 Text en Copyright ©2010 You et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology Article
You, Frank M
Luo, Ming-Cheng
Xu, Kenong
Deal, Karin R
Anderson, Olin D
Dvorak, Jan
A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening
title A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening
title_full A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening
title_fullStr A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening
title_full_unstemmed A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening
title_short A new implementation of high-throughput five-dimensional clone pooling strategy for BAC library screening
title_sort new implementation of high-throughput five-dimensional clone pooling strategy for bac library screening
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3016418/
https://www.ncbi.nlm.nih.gov/pubmed/21129228
http://dx.doi.org/10.1186/1471-2164-11-692
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