Journal of Integrative Agriculture
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2026, 25(9): 3585-3594
• Crop Science •
Genome- and transcriptome-wide association studies reveal the genetic basis of seed palmitic acid content in Brassica napus
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Haijiang Liu1,2,3, Yongheng Yuan1,2,3, Yunshan Tang1,2,3, Ruoshui Li1,2,3, Kaijie Ye1,2,3, Mengzhen Zhang1,2,3, Kun Lu1,2,3, Nengwen Yin1,2,3, Huiyan Zhao1,2,3, Yuanyuan Liu1,2,3, Taocui Huang4, Rui Wang1,2,3, Lei Shi5, Hai Du1,2,3#, Cunmin Qu1,2,3#
Affiliations
1Integrative Science Center of Germplasm Creation in Western China (Chongqing) Science City/College of Agronomy and Biotechnology, Southwest University, Chongqing 401335, China
2Engineering Research Center of South Upland Agriculture, Ministry of Education/Southwest University, Chongqing 400715, China
3Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China
4Chongqing Academy of Agricultural Sciences, Chongqing 400216, China
5National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China
About Author:
#Correspondence Cunmin Qu, E-mail: drqucunmin@swu.edu.cn; Hai Du, E-mail: haidu81@126.com
doi: 10.1016/j.jia.2024.11.015
Outline
Rapeseed (Brassica napus L.) is one of the most important oilseed crops worldwide, and the development of rapeseed varieties with high-quality oil is a long-term breeding goal. Reducing the content of palmitic acid, the main saturated fatty acid in rapeseed oil, can greatly improve oil quality. Here, a genome-wide association study (GWAS) and transcriptome-wide association study (TWAS) of seed palmitic acid content (SPAC) were performed using 393 diverse B. napus accessions. Four genes (BnaA08.DAP, BnaA08.PAA1, BnaA08.DUF106, and BnaC03.DAP) were identified by both GWAS and TWAS. The transcripts per million (TPM) values of these candidate genes at 20 and 40 days after flowering (DAF) were significantly correlated with SPAC in this association panel. Based on genetic variation in the candidate genes, four low-SPAC haplotypes were identified by combining candidate gene association analysis and haplotype analysis. Brassica napus accessions carrying low-SPAC haplotypes had lower SPAC than those carrying high-SPAC haplotypes without affecting seed oil content, seed protein content, or seed yield. Based on the functional single-nucleotide polymorphism (SNP) chrA08_9529850 (C/A) in the promoter of BnaA08.DUF106, a molecular marker (Bn_A8_SPAC_Marker) was developed that can be used to facilitate breeding for low SPAC in B. napus. Our findings provide valuable information for studying the genetic control of SPAC in B. napus. Moreover, the candidate genes, favorable haplotypes, and molecular marker identified in this study will be useful for breeding low-SPAC B. napus varieties.
rapeseed
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genome-wide association study
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transcriptome-wide association study
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seed palmitic acid content
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haplotype analysis
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molecular marker
Haijiang Liu, Yongheng Yuan, Yunshan Tang, Ruoshui Li, Kaijie Ye, Mengzhen Zhang, Kun Lu, Nengwen Yin, Huiyan Zhao, Yuanyuan Liu, Taocui Huang, Rui Wang, Lei Shi, Hai Du, Cunmin Qu.
Genome- and transcriptome-wide association studies reveal the genetic basis of seed palmitic acid content in Brassica napus[J].
Journal of Integrative Agriculture,
2026
, 25
(9)
: 3585
-3594
.
DOI: 10.1016/j.jia.2024.11.015
Year 2026 volume 25 Issue 9
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Article Info
doi: 10.1016/j.jia.2024.11.015