Genome-wide association analysis for grain moisture content and dehydration rate on maize hybrids

被引:0
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作者
Yuan Dong
Zhi-qian Feng
Fan Ye
Ting Li
Guo-liang Li
Zhou-Shuai Li
Yin-chuan Hao
Xing-hua Zhang
Wen-xin Liu
Ji-quan Xue
Shu-tu Xu
机构
[1] Northwest A&F University,Key Laboratory of Biology and Genetic Improvement of Maize in Arid Area of Northwest Region, College of Agronomy
[2] China Agricultural University,National Maize Improvement Center of China, Key Laboratory of Crop Heterosis and Utilization (MOE)
来源
Molecular Breeding | 2023年 / 43卷
关键词
Maize; Hybrid; Grain water content; Grain dehydration rata; GWAS;
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学科分类号
摘要
For mechanized maize production, a low grain water content (GWC) at harvest is necessary. However, as a complex quantitative trait, understand the genetic mechanism of GWC remains a large gap, especially in hybrids. In this study, a hybrid population through two environments including 442 F1 was used for genome-wide association analysis of GWC and the grain dehydration rate (GDR), using the area under the dry down curve (AUDDC) as the index. Then, we identified 19 and 17 associated SNPs for GWC and AUDDC, including 10 co-localized SNPs, along with 64 and 77 pairs of epistatic SNPs for GWC and AUDDC, respectively. These loci could explain 11.39–68.2% of the total phenotypic variation for GWC and 41.07–67.02% for AUDDC at different stages, whose major effect was the additive and epistatic effect. By exploring the candidate genes around the significant sites, a total of 398 and 457 possible protein-coding genes were screened, including autophagy pathway and auxin regulation-related genes, and five inbred lines with the potential to reduce GWC in the combined F1 hybrid were identified. Our research not only provides a certain reference for the genetic mechanism analysis of GWC in hybrids but also provides an added reference for breeding low-GWC materials.
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