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High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers

Pear (Pyrus spp) is an important fruit crop, grown in all temperate regions of the world, with global production ranked after grape and apples among deciduous tree crops. A high-density linkage map is a valuable tool for fine mapping quantitative trait loci (QTL) and map-based gene cloning. In this...

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Autores principales: Wu, Jun, Li, Lei-Ting, Li, Meng, Khan, M. Awais, Li, Xiu-Gen, Chen, Hui, Yin, Hao, Zhang, Shao-Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4203118/
https://www.ncbi.nlm.nih.gov/pubmed/25129128
http://dx.doi.org/10.1093/jxb/eru311
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author Wu, Jun
Li, Lei-Ting
Li, Meng
Khan, M. Awais
Li, Xiu-Gen
Chen, Hui
Yin, Hao
Zhang, Shao-Ling
author_facet Wu, Jun
Li, Lei-Ting
Li, Meng
Khan, M. Awais
Li, Xiu-Gen
Chen, Hui
Yin, Hao
Zhang, Shao-Ling
author_sort Wu, Jun
collection PubMed
description Pear (Pyrus spp) is an important fruit crop, grown in all temperate regions of the world, with global production ranked after grape and apples among deciduous tree crops. A high-density linkage map is a valuable tool for fine mapping quantitative trait loci (QTL) and map-based gene cloning. In this study, we firstly constructed a high-density linkage map of pear using SNPs integrated with SSRs, developed by the rapid and robust technology of restriction-associated DNA sequencing (RADseq). The linkage map consists of 3143 SNP markers and 98 SSRs, 3241 markers in total, spanning 2243.4 cM, with an average marker distance of 0.70 cM. Anchoring SSRs were able to anchor seventeen linkage groups to their corresponding chromosomes. Based on this high-density integrated pear linkage map and two years of fruit phenotyping, a total of 32 potential QTLs for 11 traits, including length of pedicel (LFP), single fruit weight (SFW), soluble solid content (SSC), transverse diameter (TD), vertical diameter (VD), calyx status (CS), flesh colour (FC), juice content (JC), number of seeds (NS), skin colour (SC), and skin smooth (SS), were identified and positioned on the genetic map. Among them, some important fruit-related traits have for the first time been identified, such as calyx status, length of pedicel, and flesh colour, and reliable localization of QTLs were verified repeatable. This high-density linkage map of pear is a worthy reference for mapping important fruit traits, QTL identification, and comparison and combination of different genetic maps.
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spelling pubmed-42031182014-10-22 High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers Wu, Jun Li, Lei-Ting Li, Meng Khan, M. Awais Li, Xiu-Gen Chen, Hui Yin, Hao Zhang, Shao-Ling J Exp Bot Research Paper Pear (Pyrus spp) is an important fruit crop, grown in all temperate regions of the world, with global production ranked after grape and apples among deciduous tree crops. A high-density linkage map is a valuable tool for fine mapping quantitative trait loci (QTL) and map-based gene cloning. In this study, we firstly constructed a high-density linkage map of pear using SNPs integrated with SSRs, developed by the rapid and robust technology of restriction-associated DNA sequencing (RADseq). The linkage map consists of 3143 SNP markers and 98 SSRs, 3241 markers in total, spanning 2243.4 cM, with an average marker distance of 0.70 cM. Anchoring SSRs were able to anchor seventeen linkage groups to their corresponding chromosomes. Based on this high-density integrated pear linkage map and two years of fruit phenotyping, a total of 32 potential QTLs for 11 traits, including length of pedicel (LFP), single fruit weight (SFW), soluble solid content (SSC), transverse diameter (TD), vertical diameter (VD), calyx status (CS), flesh colour (FC), juice content (JC), number of seeds (NS), skin colour (SC), and skin smooth (SS), were identified and positioned on the genetic map. Among them, some important fruit-related traits have for the first time been identified, such as calyx status, length of pedicel, and flesh colour, and reliable localization of QTLs were verified repeatable. This high-density linkage map of pear is a worthy reference for mapping important fruit traits, QTL identification, and comparison and combination of different genetic maps. Oxford University Press 2014-11 2014-08-16 /pmc/articles/PMC4203118/ /pubmed/25129128 http://dx.doi.org/10.1093/jxb/eru311 Text en © The Author 2014. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Wu, Jun
Li, Lei-Ting
Li, Meng
Khan, M. Awais
Li, Xiu-Gen
Chen, Hui
Yin, Hao
Zhang, Shao-Ling
High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers
title High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers
title_full High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers
title_fullStr High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers
title_full_unstemmed High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers
title_short High-density genetic linkage map construction and identification of fruit-related QTLs in pear using SNP and SSR markers
title_sort high-density genetic linkage map construction and identification of fruit-related qtls in pear using snp and ssr markers
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4203118/
https://www.ncbi.nlm.nih.gov/pubmed/25129128
http://dx.doi.org/10.1093/jxb/eru311
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