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Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing

BACKGROUND: The genetics and molecular biology of sesame has only recently begun to be studied even though sesame is an important oil seed crop. A high-density genetic map for sesame has not been published yet due to a lack of sufficient molecular markers. Specific length amplified fragment sequenci...

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Autores principales: Zhang, Yanxin, Wang, Linhai, Xin, Huaigen, Li, Donghua, Ma, Chouxian, Ding, Xia, Hong, Weiguo, Zhang, Xiurong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3852768/
https://www.ncbi.nlm.nih.gov/pubmed/24060091
http://dx.doi.org/10.1186/1471-2229-13-141
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author Zhang, Yanxin
Wang, Linhai
Xin, Huaigen
Li, Donghua
Ma, Chouxian
Ding, Xia
Hong, Weiguo
Zhang, Xiurong
author_facet Zhang, Yanxin
Wang, Linhai
Xin, Huaigen
Li, Donghua
Ma, Chouxian
Ding, Xia
Hong, Weiguo
Zhang, Xiurong
author_sort Zhang, Yanxin
collection PubMed
description BACKGROUND: The genetics and molecular biology of sesame has only recently begun to be studied even though sesame is an important oil seed crop. A high-density genetic map for sesame has not been published yet due to a lack of sufficient molecular markers. Specific length amplified fragment sequencing (SLAF-seq) is a recently developed high-resolution strategy for large-scale de novo SNP discovery and genotyping. SLAF-seq was employed in this study to obtain sufficient markers to construct a high-density genetic map for sesame. RESULTS: In total, 28.21 Gb of data containing 201,488,285 pair-end reads was obtained after sequencing. The average coverage for each SLAF marker was 23.48-fold in the male parent, 23.38-fold in the female parent, and 14.46-fold average in each F(2) individual. In total, 71,793 high-quality SLAFs were detected of which 3,673 SLAFs were polymorphic and 1,272 of the polymorphic markers met the requirements for use in the construction of a genetic map. The final map included 1,233 markers on the 15 linkage groups (LGs) and was 1,474.87 cM in length with an average distance of 1.20 cM between adjacent markers. To our knowledge, this map is the densest genetic linkage map to date for sesame. 'SNP_only’ markers accounted for 87.51% of the markers on the map. A total of 205 markers on the map showed significant (P < 0.05) segregation distortion. CONCLUSIONS: We report here the first high-density genetic map for sesame. The map was constructed using an F(2) population and the SLAF-seq approach, which allowed the efficient development of a large number of polymorphic markers in a short time. Results of this study will not only provide a platform for gene/QTL fine mapping, map-based gene isolation, and molecular breeding for sesame, but will also serve as a reference for positioning sequence scaffolds on a physical map, to assist in the process of assembling the sesame genome sequence.
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spelling pubmed-38527682013-12-06 Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing Zhang, Yanxin Wang, Linhai Xin, Huaigen Li, Donghua Ma, Chouxian Ding, Xia Hong, Weiguo Zhang, Xiurong BMC Plant Biol Research Article BACKGROUND: The genetics and molecular biology of sesame has only recently begun to be studied even though sesame is an important oil seed crop. A high-density genetic map for sesame has not been published yet due to a lack of sufficient molecular markers. Specific length amplified fragment sequencing (SLAF-seq) is a recently developed high-resolution strategy for large-scale de novo SNP discovery and genotyping. SLAF-seq was employed in this study to obtain sufficient markers to construct a high-density genetic map for sesame. RESULTS: In total, 28.21 Gb of data containing 201,488,285 pair-end reads was obtained after sequencing. The average coverage for each SLAF marker was 23.48-fold in the male parent, 23.38-fold in the female parent, and 14.46-fold average in each F(2) individual. In total, 71,793 high-quality SLAFs were detected of which 3,673 SLAFs were polymorphic and 1,272 of the polymorphic markers met the requirements for use in the construction of a genetic map. The final map included 1,233 markers on the 15 linkage groups (LGs) and was 1,474.87 cM in length with an average distance of 1.20 cM between adjacent markers. To our knowledge, this map is the densest genetic linkage map to date for sesame. 'SNP_only’ markers accounted for 87.51% of the markers on the map. A total of 205 markers on the map showed significant (P < 0.05) segregation distortion. CONCLUSIONS: We report here the first high-density genetic map for sesame. The map was constructed using an F(2) population and the SLAF-seq approach, which allowed the efficient development of a large number of polymorphic markers in a short time. Results of this study will not only provide a platform for gene/QTL fine mapping, map-based gene isolation, and molecular breeding for sesame, but will also serve as a reference for positioning sequence scaffolds on a physical map, to assist in the process of assembling the sesame genome sequence. BioMed Central 2013-09-24 /pmc/articles/PMC3852768/ /pubmed/24060091 http://dx.doi.org/10.1186/1471-2229-13-141 Text en Copyright © 2013 Zhang 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
Zhang, Yanxin
Wang, Linhai
Xin, Huaigen
Li, Donghua
Ma, Chouxian
Ding, Xia
Hong, Weiguo
Zhang, Xiurong
Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing
title Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing
title_full Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing
title_fullStr Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing
title_full_unstemmed Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing
title_short Construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (SLAF) sequencing
title_sort construction of a high-density genetic map for sesame based on large scale marker development by specific length amplified fragment (slaf) sequencing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3852768/
https://www.ncbi.nlm.nih.gov/pubmed/24060091
http://dx.doi.org/10.1186/1471-2229-13-141
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