QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.

Improvement in sesame drought tolerance at seedling stage is important for yield stability. Genetic approaches combing with conventional breeding is the most effective way to develop drought-tolerant cultivars. In this study, three traits and their relative values, including seedling weight (SW), sh...

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Main Authors: Junchao Liang, Jian Sun, Yanying Ye, Xiaowen Yan, Tingxian Yan, Yueliang Rao, Hongying Zhou, Meiwang Le
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0247681
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spelling doaj-38330b894021454cb3ae190be30a77572021-08-23T12:22:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01162e024768110.1371/journal.pone.0247681QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.Junchao LiangJian SunYanying YeXiaowen YanTingxian YanYueliang RaoHongying ZhouMeiwang LeImprovement in sesame drought tolerance at seedling stage is important for yield stability. Genetic approaches combing with conventional breeding is the most effective way to develop drought-tolerant cultivars. In this study, three traits and their relative values, including seedling weight (SW), shoot length (SL) and root length (RL), were evaluated under control and osmotic conditions in a recombinant inbred line (RIL) population derived from cross of Zhushanbai and Jinhuangma. Significant variation and high broad sense heritability were observed for all traits except SW under stress condition in the population. With this population, a high-density linkage map with 1354 bin markers was constructed through whole genome re-sequencing (WGS) strategy. Quantitative trait loci (QTL) mapping was performed for all the traits. A total of 34 QTLs were detected on 10 chromosomes. Among them, 13 stable QTLs were revealed in two independent experiments, eight of them were associated with traits under water stress condition. One region on chromosome 12 related to RL under osmotic condition and relative RL had the highest LOD value and explained the largest phenotypic variation among all the QTLs detected under water stress condition. These findings will provide new genetic resources for molecular improvement of drought tolerance and candidate gene identification in sesame.https://doi.org/10.1371/journal.pone.0247681
collection DOAJ
language English
format Article
sources DOAJ
author Junchao Liang
Jian Sun
Yanying Ye
Xiaowen Yan
Tingxian Yan
Yueliang Rao
Hongying Zhou
Meiwang Le
spellingShingle Junchao Liang
Jian Sun
Yanying Ye
Xiaowen Yan
Tingxian Yan
Yueliang Rao
Hongying Zhou
Meiwang Le
QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
PLoS ONE
author_facet Junchao Liang
Jian Sun
Yanying Ye
Xiaowen Yan
Tingxian Yan
Yueliang Rao
Hongying Zhou
Meiwang Le
author_sort Junchao Liang
title QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
title_short QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
title_full QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
title_fullStr QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
title_full_unstemmed QTL mapping of PEG-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
title_sort qtl mapping of peg-induced drought tolerance at the early seedling stage in sesame using whole genome re-sequencing.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description Improvement in sesame drought tolerance at seedling stage is important for yield stability. Genetic approaches combing with conventional breeding is the most effective way to develop drought-tolerant cultivars. In this study, three traits and their relative values, including seedling weight (SW), shoot length (SL) and root length (RL), were evaluated under control and osmotic conditions in a recombinant inbred line (RIL) population derived from cross of Zhushanbai and Jinhuangma. Significant variation and high broad sense heritability were observed for all traits except SW under stress condition in the population. With this population, a high-density linkage map with 1354 bin markers was constructed through whole genome re-sequencing (WGS) strategy. Quantitative trait loci (QTL) mapping was performed for all the traits. A total of 34 QTLs were detected on 10 chromosomes. Among them, 13 stable QTLs were revealed in two independent experiments, eight of them were associated with traits under water stress condition. One region on chromosome 12 related to RL under osmotic condition and relative RL had the highest LOD value and explained the largest phenotypic variation among all the QTLs detected under water stress condition. These findings will provide new genetic resources for molecular improvement of drought tolerance and candidate gene identification in sesame.
url https://doi.org/10.1371/journal.pone.0247681
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