QTL mapping of drought tolerance traits in soybean with SLAF sequencing

Drought stress is an important factor affecting soybean yield. Improving drought tolerance of soybean varieties can increase yield and yield stability when the stress occurs. Identifying QTL related to drought tolerance using molecular marker-assisted selection is able to facilitate the development...

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Main Authors: Honglei Ren, Jianan Han, Xingrong Wang, Bo Zhang, Lili Yu, Huawei Gao, Huilong Hong, Rujian Sun, Yu Tian, Xusheng Qi, Zhangxiong Liu, Xiaoxia Wu, Li-Juan Qiu
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-12-01
Series:Crop Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214514120300714
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language English
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author Honglei Ren
Jianan Han
Xingrong Wang
Bo Zhang
Lili Yu
Huawei Gao
Huilong Hong
Rujian Sun
Yu Tian
Xusheng Qi
Zhangxiong Liu
Xiaoxia Wu
Li-Juan Qiu
spellingShingle Honglei Ren
Jianan Han
Xingrong Wang
Bo Zhang
Lili Yu
Huawei Gao
Huilong Hong
Rujian Sun
Yu Tian
Xusheng Qi
Zhangxiong Liu
Xiaoxia Wu
Li-Juan Qiu
QTL mapping of drought tolerance traits in soybean with SLAF sequencing
Crop Journal
Soybean drought tolerance
Simplified genome sequencing
Quantitative trait loci
Plant height
Seed weight per plant
author_facet Honglei Ren
Jianan Han
Xingrong Wang
Bo Zhang
Lili Yu
Huawei Gao
Huilong Hong
Rujian Sun
Yu Tian
Xusheng Qi
Zhangxiong Liu
Xiaoxia Wu
Li-Juan Qiu
author_sort Honglei Ren
title QTL mapping of drought tolerance traits in soybean with SLAF sequencing
title_short QTL mapping of drought tolerance traits in soybean with SLAF sequencing
title_full QTL mapping of drought tolerance traits in soybean with SLAF sequencing
title_fullStr QTL mapping of drought tolerance traits in soybean with SLAF sequencing
title_full_unstemmed QTL mapping of drought tolerance traits in soybean with SLAF sequencing
title_sort qtl mapping of drought tolerance traits in soybean with slaf sequencing
publisher KeAi Communications Co., Ltd.
series Crop Journal
issn 2214-5141
publishDate 2020-12-01
description Drought stress is an important factor affecting soybean yield. Improving drought tolerance of soybean varieties can increase yield and yield stability when the stress occurs. Identifying QTL related to drought tolerance using molecular marker-assisted selection is able to facilitate the development of drought-tolerant soybean varieties. In this study, we used a high-yielding and drought-sensitive cultivar ‘Zhonghuang 35’ and a drought-tolerant cultivar ‘Jindou 21’ to establish F6:9 recombinant inbred lines. We constructed a high-density genetic map using specific locus amplified fragment sequencing (SLAF-Seq) technology. The genetic map contained 8078 SLAF markers distributing across 20 soybean chromosomes with a total genetic distance of 3780.98 cM and an average genetic distance of 0.59 cM between adjacent markers. Two treatments (irrigation and drought) were used in the field tests, the Additive-Inclusive Composite Interval Mapping (ICIM-ADD) was used to call QTL, and plant height and seed weight per plant were used as the indicators of drought tolerance. We identified a total of 23 QTL related to drought tolerance. Among them, seven QTL (qPH2, qPH6, qPH7, qPH17, qPH19-1, qPH19-2, and qPH19-3) on chromosomes 2, 6, 7, 17, and 19 were related to plant height, and five QTL (qSWPP2, qSWPP6, qSWPP13, qSWPP17, and qSWPP19) on chromosomes 2, 6, 13, 17, and 19 were related to seed weight and could be considered as the major QTL. In addition, three common QTL (qPH6/qSWPP6, qPH17/qSWPP17, and qPH19-3/qSWPP19) for both plant height and seed weight per plant were located in the same genomic regions on the same chromosomes. Three (qPH2, qPH17, and qPH19-2) and four novel QTL (qSWPP2, qSWPP13, qSWPP17, and qSWPP19) were identified for plant height and seed weight per plant, respectively. Two pairs of QTL (qPH2/qSWPP2 and qPH17/qSWPP17) were also common for both plant height and seed weight per plant. These QTL and closely linked SLAF markers could be used to accelerate breeding for drought tolerant cultivars via MAS.
topic Soybean drought tolerance
Simplified genome sequencing
Quantitative trait loci
Plant height
Seed weight per plant
url http://www.sciencedirect.com/science/article/pii/S2214514120300714
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spelling doaj-af909b695df64e9888a9987e0bc6231f2021-04-02T20:20:19ZengKeAi Communications Co., Ltd.Crop Journal2214-51412020-12-0186977989QTL mapping of drought tolerance traits in soybean with SLAF sequencingHonglei Ren0Jianan Han1Xingrong Wang2Bo Zhang3Lili Yu4Huawei Gao5Huilong Hong6Rujian Sun7Yu Tian8Xusheng Qi9Zhangxiong Liu10Xiaoxia Wu11Li-Juan Qiu12College of Agriculture, Northeast Agricultural University, Harbin 150030, Heilongjiang, China; National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China; Heilongjiang Academy of Agricultural Sciences, Harbin 150086, Heilongjiang, ChinaNational Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, ChinaInstitute of Crop Sciences, Gansu Academy of Agricultural Sciences, Lanzhou 730070, Gansu, ChinaSchool of Plant and Environmental Sciences, Virginia Polytechnic Institute and State University, Blacksburg, VA 24060, USANational Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, ChinaCollege of Agriculture, Northeast Agricultural University, Harbin 150030, Heilongjiang, China; National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, ChinaCollege of Agriculture, Northeast Agricultural University, Harbin 150030, Heilongjiang, China; National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, ChinaCollege of Agriculture, Northeast Agricultural University, Harbin 150030, Heilongjiang, China; National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, ChinaNational Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, ChinaInstitute of Crop Sciences, Gansu Academy of Agricultural Sciences, Lanzhou 730070, Gansu, ChinaNational Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China; Corresponding authors.College of Agriculture, Northeast Agricultural University, Harbin 150030, Heilongjiang, China; Corresponding authors.National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China; Corresponding authors.Drought stress is an important factor affecting soybean yield. Improving drought tolerance of soybean varieties can increase yield and yield stability when the stress occurs. Identifying QTL related to drought tolerance using molecular marker-assisted selection is able to facilitate the development of drought-tolerant soybean varieties. In this study, we used a high-yielding and drought-sensitive cultivar ‘Zhonghuang 35’ and a drought-tolerant cultivar ‘Jindou 21’ to establish F6:9 recombinant inbred lines. We constructed a high-density genetic map using specific locus amplified fragment sequencing (SLAF-Seq) technology. The genetic map contained 8078 SLAF markers distributing across 20 soybean chromosomes with a total genetic distance of 3780.98 cM and an average genetic distance of 0.59 cM between adjacent markers. Two treatments (irrigation and drought) were used in the field tests, the Additive-Inclusive Composite Interval Mapping (ICIM-ADD) was used to call QTL, and plant height and seed weight per plant were used as the indicators of drought tolerance. We identified a total of 23 QTL related to drought tolerance. Among them, seven QTL (qPH2, qPH6, qPH7, qPH17, qPH19-1, qPH19-2, and qPH19-3) on chromosomes 2, 6, 7, 17, and 19 were related to plant height, and five QTL (qSWPP2, qSWPP6, qSWPP13, qSWPP17, and qSWPP19) on chromosomes 2, 6, 13, 17, and 19 were related to seed weight and could be considered as the major QTL. In addition, three common QTL (qPH6/qSWPP6, qPH17/qSWPP17, and qPH19-3/qSWPP19) for both plant height and seed weight per plant were located in the same genomic regions on the same chromosomes. Three (qPH2, qPH17, and qPH19-2) and four novel QTL (qSWPP2, qSWPP13, qSWPP17, and qSWPP19) were identified for plant height and seed weight per plant, respectively. Two pairs of QTL (qPH2/qSWPP2 and qPH17/qSWPP17) were also common for both plant height and seed weight per plant. These QTL and closely linked SLAF markers could be used to accelerate breeding for drought tolerant cultivars via MAS.http://www.sciencedirect.com/science/article/pii/S2214514120300714Soybean drought toleranceSimplified genome sequencingQuantitative trait lociPlant heightSeed weight per plant