Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.

<p>Abstract</p> <p>Background</p> <p>Sequence related amplified polymorphism (SRAP) is commonly used to construct high density genetic maps, map genes and QTL of important agronomic traits in crops and perform genetic diversity analysis without knowing sequence informat...

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Main Authors: Geng Jianfeng, Mou Yanglong, Zhang Jiefu, Li Wei, McVetty Peter BE, Hu Shengwu, Li Genyi
Format: Article
Language:English
Published: BMC 2011-05-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/12/249
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spelling doaj-e70ec0a51cb44044a74be5e46e7281682020-11-24T20:44:30ZengBMCBMC Genomics1471-21642011-05-0112124910.1186/1471-2164-12-249Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.Geng JianfengMou YanglongZhang JiefuLi WeiMcVetty Peter BEHu ShengwuLi Genyi<p>Abstract</p> <p>Background</p> <p>Sequence related amplified polymorphism (SRAP) is commonly used to construct high density genetic maps, map genes and QTL of important agronomic traits in crops and perform genetic diversity analysis without knowing sequence information. To combine next generation sequencing technology with SRAP, Illumina's Solexa sequencing was used to sequence tagged SRAP PCR products.</p> <p>Results</p> <p>Three sets of SRAP primers and three sets of tagging primers were used in 77,568 SRAP PCR reactions and the same number of tagging PCR reactions respectively to produce a pooled sample for Illumina's Solexa sequencing. After sequencing, 1.28 GB of sequence with over 13 million paired-end sequences was obtained and used to match Solexa sequences with their corresponding SRAP markers and to integrate Solexa sequences on an ultradense genetic map. The ultradense genetic bin map with 465 bins was constructed using a recombinant inbred (RI) line mapping population in <it>B. rapa</it>. For this ultradense genetic bin map, 9,177 SRAP markers, 1,737 integrated unique Solexa paired-end sequences and 46 SSR markers representing 10,960 independent genetic loci were assembled and 141 unique Solexa paired-end sequences were matched with their corresponding SRAP markers. The genetic map in <it>B. rapa </it>was aligned with the previous ultradense genetic map in <it>B. napus </it>through common SRAP markers in these two species. Additionally, SSR markers were used to perform alignment of the current genetic map with other five genetic maps in <it>B. rapa </it>and <it>B. napus</it>.</p> <p>Conclusion</p> <p>We used SRAP to construct an ultradense genetic map with 10,960 independent genetic loci in <it>B. rapa </it>that is the most saturated genetic map ever constructed in this species. Using next generation sequencing, we integrated 1,878 Solexa sequences on the genetic map. These integrated sequences will be used to assemble the scaffolds in the <it>B. rapa </it>genome. Additionally, this genetic map may be used for gene cloning and marker development in <it>B. rapa </it>and <it>B. napus</it>.</p> http://www.biomedcentral.com/1471-2164/12/249
collection DOAJ
language English
format Article
sources DOAJ
author Geng Jianfeng
Mou Yanglong
Zhang Jiefu
Li Wei
McVetty Peter BE
Hu Shengwu
Li Genyi
spellingShingle Geng Jianfeng
Mou Yanglong
Zhang Jiefu
Li Wei
McVetty Peter BE
Hu Shengwu
Li Genyi
Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.
BMC Genomics
author_facet Geng Jianfeng
Mou Yanglong
Zhang Jiefu
Li Wei
McVetty Peter BE
Hu Shengwu
Li Genyi
author_sort Geng Jianfeng
title Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.
title_short Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.
title_full Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.
title_fullStr Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.
title_full_unstemmed Integration of Solexa sequences on an ultradense genetic map in <it>Brassica rapa </it>L.
title_sort integration of solexa sequences on an ultradense genetic map in <it>brassica rapa </it>l.
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2011-05-01
description <p>Abstract</p> <p>Background</p> <p>Sequence related amplified polymorphism (SRAP) is commonly used to construct high density genetic maps, map genes and QTL of important agronomic traits in crops and perform genetic diversity analysis without knowing sequence information. To combine next generation sequencing technology with SRAP, Illumina's Solexa sequencing was used to sequence tagged SRAP PCR products.</p> <p>Results</p> <p>Three sets of SRAP primers and three sets of tagging primers were used in 77,568 SRAP PCR reactions and the same number of tagging PCR reactions respectively to produce a pooled sample for Illumina's Solexa sequencing. After sequencing, 1.28 GB of sequence with over 13 million paired-end sequences was obtained and used to match Solexa sequences with their corresponding SRAP markers and to integrate Solexa sequences on an ultradense genetic map. The ultradense genetic bin map with 465 bins was constructed using a recombinant inbred (RI) line mapping population in <it>B. rapa</it>. For this ultradense genetic bin map, 9,177 SRAP markers, 1,737 integrated unique Solexa paired-end sequences and 46 SSR markers representing 10,960 independent genetic loci were assembled and 141 unique Solexa paired-end sequences were matched with their corresponding SRAP markers. The genetic map in <it>B. rapa </it>was aligned with the previous ultradense genetic map in <it>B. napus </it>through common SRAP markers in these two species. Additionally, SSR markers were used to perform alignment of the current genetic map with other five genetic maps in <it>B. rapa </it>and <it>B. napus</it>.</p> <p>Conclusion</p> <p>We used SRAP to construct an ultradense genetic map with 10,960 independent genetic loci in <it>B. rapa </it>that is the most saturated genetic map ever constructed in this species. Using next generation sequencing, we integrated 1,878 Solexa sequences on the genetic map. These integrated sequences will be used to assemble the scaffolds in the <it>B. rapa </it>genome. Additionally, this genetic map may be used for gene cloning and marker development in <it>B. rapa </it>and <it>B. napus</it>.</p>
url http://www.biomedcentral.com/1471-2164/12/249
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