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Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon

Fruit pedicel (FP) is an important determinant of premium fruit quality that directly affects commercial market value. However, in-depth molecular and genetic basis of pedicel-related traits has not been identified in watermelon. Herein, a quantitative trait locus (QTL) mapping strategy was used to...

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Autores principales: Amanullah, Sikandar, Osae, Benjamin Agyei, Yang, Tiantian, Li, Shenglong, Abbas, Farhat, Liu, Shi, Liu, Shusen, Song, Zhengfeng, Wang, Xuezheng, Gao, Peng, Luan, Feishi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9128861/
https://www.ncbi.nlm.nih.gov/pubmed/35620678
http://dx.doi.org/10.3389/fpls.2022.879919
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author Amanullah, Sikandar
Osae, Benjamin Agyei
Yang, Tiantian
Li, Shenglong
Abbas, Farhat
Liu, Shi
Liu, Shusen
Song, Zhengfeng
Wang, Xuezheng
Gao, Peng
Luan, Feishi
author_facet Amanullah, Sikandar
Osae, Benjamin Agyei
Yang, Tiantian
Li, Shenglong
Abbas, Farhat
Liu, Shi
Liu, Shusen
Song, Zhengfeng
Wang, Xuezheng
Gao, Peng
Luan, Feishi
author_sort Amanullah, Sikandar
collection PubMed
description Fruit pedicel (FP) is an important determinant of premium fruit quality that directly affects commercial market value. However, in-depth molecular and genetic basis of pedicel-related traits has not been identified in watermelon. Herein, a quantitative trait locus (QTL) mapping strategy was used to identify the potential genetic regions controlling FP traits based on newly derived whole-genome single nucleotide polymorphism based cleaved amplified polymorphism sequence (SNP-CAPS) markers. Next-generation sequencing based whole-genome re-sequencing of two watermelon parent lines revealed 98.30 and 98.40% of average coverage, 4,989,869 SNP variants, and 182,949 CAPS loci pairs across the reference genome, respectively. A total of 221 sets of codominant markers exhibited 46.42% polymorphism rate and were effectively genotyped within 100-F(2:3) derived mapping population. The developed linkage map covered a total of 2,630.49 cM genetic length with averaged 11.90 cM, and depicted a valid marker-trait association. In total, 6 QTLs (qFPL4.1, qFPW4.1, qFPD2.1, qFPD2.2, qFPD8.1, qFPD10.1) were mapped with five major effects and one minor effect between the whole genome adjacent markers positioned over distinct chromosomes (02, 04, 08, 10), based on the ICIM-ADD mapping approach. These significant QTLs were similarly mapped in delimited flanking regions of 675.10, 751.38, 859.24, 948.39, and 947.51 kb, which collectively explained 8.64–13.60% PVE, respectively. A highly significant and positive correlation was found among the observed variables. To our knowledge, we first time reported the mapped QTLs/genes affecting FP traits of watermelon, and our illustrated outcomes will deliver the potential insights for fine genetic mapping as well as functional gene analysis through MAS-based breeding approaches.
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spelling pubmed-91288612022-05-25 Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon Amanullah, Sikandar Osae, Benjamin Agyei Yang, Tiantian Li, Shenglong Abbas, Farhat Liu, Shi Liu, Shusen Song, Zhengfeng Wang, Xuezheng Gao, Peng Luan, Feishi Front Plant Sci Plant Science Fruit pedicel (FP) is an important determinant of premium fruit quality that directly affects commercial market value. However, in-depth molecular and genetic basis of pedicel-related traits has not been identified in watermelon. Herein, a quantitative trait locus (QTL) mapping strategy was used to identify the potential genetic regions controlling FP traits based on newly derived whole-genome single nucleotide polymorphism based cleaved amplified polymorphism sequence (SNP-CAPS) markers. Next-generation sequencing based whole-genome re-sequencing of two watermelon parent lines revealed 98.30 and 98.40% of average coverage, 4,989,869 SNP variants, and 182,949 CAPS loci pairs across the reference genome, respectively. A total of 221 sets of codominant markers exhibited 46.42% polymorphism rate and were effectively genotyped within 100-F(2:3) derived mapping population. The developed linkage map covered a total of 2,630.49 cM genetic length with averaged 11.90 cM, and depicted a valid marker-trait association. In total, 6 QTLs (qFPL4.1, qFPW4.1, qFPD2.1, qFPD2.2, qFPD8.1, qFPD10.1) were mapped with five major effects and one minor effect between the whole genome adjacent markers positioned over distinct chromosomes (02, 04, 08, 10), based on the ICIM-ADD mapping approach. These significant QTLs were similarly mapped in delimited flanking regions of 675.10, 751.38, 859.24, 948.39, and 947.51 kb, which collectively explained 8.64–13.60% PVE, respectively. A highly significant and positive correlation was found among the observed variables. To our knowledge, we first time reported the mapped QTLs/genes affecting FP traits of watermelon, and our illustrated outcomes will deliver the potential insights for fine genetic mapping as well as functional gene analysis through MAS-based breeding approaches. Frontiers Media S.A. 2022-05-09 /pmc/articles/PMC9128861/ /pubmed/35620678 http://dx.doi.org/10.3389/fpls.2022.879919 Text en Copyright © 2022 Amanullah, Osae, Yang, Li, Abbas, Liu, Liu, Song, Wang, Gao and Luan. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Amanullah, Sikandar
Osae, Benjamin Agyei
Yang, Tiantian
Li, Shenglong
Abbas, Farhat
Liu, Shi
Liu, Shusen
Song, Zhengfeng
Wang, Xuezheng
Gao, Peng
Luan, Feishi
Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon
title Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon
title_full Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon
title_fullStr Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon
title_full_unstemmed Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon
title_short Development of Whole Genome SNP-CAPS Markers and Preliminary QTL Mapping of Fruit Pedicel Traits in Watermelon
title_sort development of whole genome snp-caps markers and preliminary qtl mapping of fruit pedicel traits in watermelon
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9128861/
https://www.ncbi.nlm.nih.gov/pubmed/35620678
http://dx.doi.org/10.3389/fpls.2022.879919
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