Lipid remodeling and response mechanisms during the germination of aged oat seeds.

IF 4.3 2区 生物学 Q1 PLANT SCIENCES BMC Plant Biology Pub Date : 2025-02-13 DOI:10.1186/s12870-025-06191-9
Kun Yi, Luyan Gao, Yue Xu, Jiajia Yang, Peisheng Mao, Liru Dou, Manli Li
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Abstract

Background: The high fat content in oat seeds makes them susceptible to aging during storage, leading to reduced seed vigor, delayed germination, and even seed death. Much evidence suggests that lipid remodeling is closely associated with successful seed germination. However, the dynamic behavior and response mechanisms of lipids during the germination of aged oat seeds remain unclear. In this study, 'Monida' (aging-tolerant) and 'Haywire' (aging-sensitive), were used to investigate the lipid profiles in the embryo and endosperm and the dynamic transcriptomic differences in the embryo during the germination.

Results: The results demonstrate that phospholipid alterations during the germination of aged seeds are more significant compared to unaged seeds, indicating that aging affects lipid remodeling during germination, particularly in the 'Haywire'. Further analysis revealed that the most critical lipid response events occurred at the end of germination stage II (32 h) in embryo, primarily regulated through the PLC-DGK pathway to modulate phospholipid and glycerolipid molecules. Specifically, transcripts of PLC, DGK, and DGAT were upregulated, promoting the generation of diacylglycerol (DG) from various phospholipids, which further increased the monogalactosyldiacylglycerol/digalactosyldiacylglycerol (MGDG/DGDG) ratio, thereby influencing membrane repair. Additionally, at 6 h of germination in aged seeds, PC(3:0/0:0) levels significantly decreased. Compared to 'Monida,' the aging-sensitive 'Haywire' seeds exhibited substantial production of PE(19:0/0:0) and PC(15:0/0:0) at 32 h of germination, which may be key factors contributing to the seed's sensitivity to aging and the significant reduction in germination percentage after aging. Therefore, PC(3:0/0:0), PE(19:0/0:0), and PC(15:0/0:0) could serve as important lipid metabolic markers in future studies on the mechanisms of oat seed vigor.

Conclusions: The findings of this study provide insights into the specificity of lipid remodeling and its response mechanisms during the germination of aged oat seeds, providing a theoretical foundation for the safe preservation of oat germplasm and the development of aging-tolerant varieties.

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背景:燕麦种子中的脂肪含量很高,使其在贮藏过程中容易老化,导致种子活力降低、萌发延迟甚至种子死亡。许多证据表明,脂质重塑与种子的成功萌发密切相关。然而,脂质在老化燕麦种子萌发过程中的动态行为和反应机制仍不清楚。本研究利用'Monida'(耐老化)和'Haywire'(对老化敏感)研究了胚和胚乳中的脂质分布以及胚在萌发过程中的动态转录组差异:结果:结果表明,与未老化种子相比,老化种子萌发过程中磷脂的变化更为显著,这表明老化会影响萌发过程中的脂质重塑,尤其是在 "Haywire "种子中。进一步分析发现,最关键的脂质反应事件发生在胚萌发第二阶段末期(32 h),主要通过 PLC-DGK 通路调控磷脂和甘油酯分子。具体来说,PLC、DGK 和 DGAT 的转录本上调,促进了各种磷脂生成二酰甘油(DG),从而进一步提高了单半乳糖基二乙酰甘油/二半乳糖基二乙酰甘油(MGDG/DGDG)的比率,从而影响了膜修复。此外,在老化种子萌发 6 小时后,PC(3:0/0:0)水平显著下降。与'Monida'相比,对老化敏感的'Haywire'种子在萌发 32 小时后会产生大量的 PE(19:0/0:0) 和 PC(15:0/0:0),这可能是导致种子对老化敏感以及老化后发芽率显著降低的关键因素。因此,PC(3:0/0:0)、PE(19:0/0:0)和 PC(15:0/0:0)可作为今后燕麦种子活力机制研究的重要脂质代谢标记:本研究的结果有助于深入了解老化燕麦种子萌发过程中脂质重塑的特异性及其反应机制,为燕麦种质的安全保存和耐老化品种的开发提供了理论依据。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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