Genome-wide association study of haploid female fertility (HFF) and haploid male fertility (HMF) in BS39-derived doubled haploid maize lines.

IF 4.4 1区 农林科学 Q1 AGRONOMY Theoretical and Applied Genetics Pub Date : 2024-12-11 DOI:10.1007/s00122-024-04789-5
Mercy Fakude, Ann Murithi, Ursula K Frei, Paul M Scott, Thomas Lübberstedt
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Abstract

Key message: Restoration of haploid female and haploid male fertility without colchicine is feasible. Three SNPs and eight gene models for HFF, and one SNP and a gene model for HMF were identified. Doubled haploid (DH) breeding accelerates the development of elite inbred lines and facilitates the incorporation of exotic germplasm, offering a powerful tool for maize improvement. Traditional DH breeding relies on colchicine to induce haploid genome doubling. Colchicine is toxic, and its application is labor-intensive, with most genotypes recording low genome doubling rates (10-30%). This study investigates spontaneous haploid genome doubling (SHGD) as a safer and more efficient alternative to colchicine. We evaluated the effectiveness of SHGD in restoring haploid female fertility (HFF) and haploid male fertility (HMF) without colchicine. Using genome-wide association studies (GWAS), we identified genomic regions influencing HFF and HMF. The plant materials included the BS39-haploid isogenic lines (HILs) and BS39-SHGD-haploid isogenic lines (HILs). Our results revealed significant SNP associations for both traits, with candidate genes involved in cell cycle regulation, cytoskeletal organization, and hormonal signaling. Analysis of variance (ANOVA) revealed significant variation in HFF across haploids and two environments. Similarly, HMF showed substantial differences across haploids and between the two environments. Spearman correlation between HFF and HMF showed no correlation (r = -0.03) between the two traits. HFF showed high heritability (0.8), indicating strong genetic control, whereas HMF displayed moderate heritability (0.5), suggesting additional environmental influences. The findings underscore the potential of SHGD to enhance DH breeding efficiency and support the development of new maize varieties tailored to diverse agricultural needs.

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bs39衍生双单倍体玉米系单倍体雌性育性(HFF)与雄性育性(HMF)的全基因组关联研究
关键信息:在不使用秋水仙碱的情况下恢复雌性单倍体和雄性单倍体的生殖能力是可行的。鉴定出HFF的3个SNP和8个基因模型,HMF的1个SNP和1个基因模型。双单倍体(double haploid, DH)育种加速了优良自交系的形成,促进了外来种质的整合,为玉米改良提供了有力的工具。传统的DH育种依靠秋水仙碱诱导单倍体基因组加倍。秋水仙碱是有毒的,其应用是劳动密集型的,大多数基因型的基因组加倍率很低(10-30%)。本研究探讨了自然单倍体基因组加倍(SHGD)作为秋水仙碱的一种更安全、更有效的替代品。我们评估了SHGD在不使用秋水仙碱的情况下恢复单倍体雌性生殖能力(HFF)和单倍体雄性生殖能力(HMF)的效果。利用全基因组关联研究(GWAS),我们确定了影响HFF和HMF的基因组区域。植物材料包括bs39 -单倍体等基因系(HILs)和bs39 - shgd -单倍体等基因系(HILs)。我们的研究结果揭示了这两种性状的显著SNP关联,候选基因涉及细胞周期调节、细胞骨架组织和激素信号传导。方差分析(ANOVA)显示HFF在单倍体和两种环境之间存在显著差异。同样,HMF在单倍体之间和两种环境之间表现出实质性的差异。HFF与HMF的Spearman相关无统计学意义(r = -0.03)。HFF表现出高遗传力(0.8),表明遗传控制较强,而HMF表现出中等遗传力(0.5),表明有额外的环境影响。这些发现强调了SHGD在提高DH育种效率和支持开发适合不同农业需求的玉米新品种方面的潜力。
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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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