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Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)

Next-generation whole-genome shotgun assemblies of complex genomes are highly useful, but fail to link nearby sequence contigs with each other or provide a linear order of contigs along individual chromosomes. Here, we introduce a strategy based on sequencing progeny of a segregating population that...

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Autores principales: Mascher, Martin, Muehlbauer, Gary J, Rokhsar, Daniel S, Chapman, Jarrod, Schmutz, Jeremy, Barry, Kerrie, Muñoz-Amatriaín, María, Close, Timothy J, Wise, Roger P, Schulman, Alan H, Himmelbach, Axel, Mayer, Klaus FX, Scholz, Uwe, Poland, Jesse A, Stein, Nils, Waugh, Robbie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4298792/
https://www.ncbi.nlm.nih.gov/pubmed/23998490
http://dx.doi.org/10.1111/tpj.12319
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author Mascher, Martin
Muehlbauer, Gary J
Rokhsar, Daniel S
Chapman, Jarrod
Schmutz, Jeremy
Barry, Kerrie
Muñoz-Amatriaín, María
Close, Timothy J
Wise, Roger P
Schulman, Alan H
Himmelbach, Axel
Mayer, Klaus FX
Scholz, Uwe
Poland, Jesse A
Stein, Nils
Waugh, Robbie
author_facet Mascher, Martin
Muehlbauer, Gary J
Rokhsar, Daniel S
Chapman, Jarrod
Schmutz, Jeremy
Barry, Kerrie
Muñoz-Amatriaín, María
Close, Timothy J
Wise, Roger P
Schulman, Alan H
Himmelbach, Axel
Mayer, Klaus FX
Scholz, Uwe
Poland, Jesse A
Stein, Nils
Waugh, Robbie
author_sort Mascher, Martin
collection PubMed
description Next-generation whole-genome shotgun assemblies of complex genomes are highly useful, but fail to link nearby sequence contigs with each other or provide a linear order of contigs along individual chromosomes. Here, we introduce a strategy based on sequencing progeny of a segregating population that allows de novo production of a genetically anchored linear assembly of the gene space of an organism. We demonstrate the power of the approach by reconstructing the chromosomal organization of the gene space of barley, a large, complex and highly repetitive 5.1 Gb genome. We evaluate the robustness of the new assembly by comparison to a recently released physical and genetic framework of the barley genome, and to various genetically ordered sequence-based genotypic datasets. The method is independent of the need for any prior sequence resources, and will enable rapid and cost-efficient establishment of powerful genomic information for many species.
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spelling pubmed-42987922015-01-27 Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ) Mascher, Martin Muehlbauer, Gary J Rokhsar, Daniel S Chapman, Jarrod Schmutz, Jeremy Barry, Kerrie Muñoz-Amatriaín, María Close, Timothy J Wise, Roger P Schulman, Alan H Himmelbach, Axel Mayer, Klaus FX Scholz, Uwe Poland, Jesse A Stein, Nils Waugh, Robbie Plant J Technical Advance Next-generation whole-genome shotgun assemblies of complex genomes are highly useful, but fail to link nearby sequence contigs with each other or provide a linear order of contigs along individual chromosomes. Here, we introduce a strategy based on sequencing progeny of a segregating population that allows de novo production of a genetically anchored linear assembly of the gene space of an organism. We demonstrate the power of the approach by reconstructing the chromosomal organization of the gene space of barley, a large, complex and highly repetitive 5.1 Gb genome. We evaluate the robustness of the new assembly by comparison to a recently released physical and genetic framework of the barley genome, and to various genetically ordered sequence-based genotypic datasets. The method is independent of the need for any prior sequence resources, and will enable rapid and cost-efficient establishment of powerful genomic information for many species. BlackWell Publishing Ltd 2013-11 2013-10-10 /pmc/articles/PMC4298792/ /pubmed/23998490 http://dx.doi.org/10.1111/tpj.12319 Text en © 2013 The Authors The Plant Journal © 2013 John Wiley & Sons Ltd http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Technical Advance
Mascher, Martin
Muehlbauer, Gary J
Rokhsar, Daniel S
Chapman, Jarrod
Schmutz, Jeremy
Barry, Kerrie
Muñoz-Amatriaín, María
Close, Timothy J
Wise, Roger P
Schulman, Alan H
Himmelbach, Axel
Mayer, Klaus FX
Scholz, Uwe
Poland, Jesse A
Stein, Nils
Waugh, Robbie
Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)
title Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)
title_full Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)
title_fullStr Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)
title_full_unstemmed Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)
title_short Anchoring and ordering NGS contig assemblies by population sequencing (POPSEQ)
title_sort anchoring and ordering ngs contig assemblies by population sequencing (popseq)
topic Technical Advance
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4298792/
https://www.ncbi.nlm.nih.gov/pubmed/23998490
http://dx.doi.org/10.1111/tpj.12319
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