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解读种子老化:分子见解与恢复老化种子活力的引发策略

Deciphering Seed Deterioration: Molecular Insights and Priming Strategies for Revitalizing Aged Seeds.

作者信息

Xing Weigeng, Li Yi, Zhou Linyan, Hong Hao, Liu Yuan, Luo Shuailong, Zou Jialong, Zhao Yan, Yang Yanfei, Xu Zhenjiang, Tan Bin

机构信息

College of Agriculture, Guangzhou Sub-Center for New Plant Variety Tests of the Ministry of Agriculture and Rural Affairs, South China Agricultural University, Guangzhou 510642, China.

出版信息

Plants (Basel). 2025 Jun 5;14(11):1730. doi: 10.3390/plants14111730.

Abstract

Seed deterioration is an inevitable process during storage, characterized by a gradual loss of germination capacity and eventual seed death, which poses challenges to seed longevity and the preservation of genetic resources. Understanding the molecular mechanisms driving seed aging and inherent resistance pathways, alongside developing innovative rejuvenation strategies for deteriorated seeds, is crucial for agricultural sustainability and germplasm banking. This review systematically examines (1) redox-regulated deterioration pathways involving reactive oxygen species (ROS) and macromolecular damage cascades, (2) anti-deterioration mechanisms mediated by the antioxidant system and macromolecular repair mechanisms, (3) genetic-epigenetic networks governing seed aging resistance, particularly ABA- and IAA-mediated signaling through ABI3/ABI5/LEC1 regulons, and (4) technological advances in seed priming that restore aged seeds via metabolic resetting and repair potentiation. By integrating multi-omics insights with physiological evidence, we propose a hierarchical model of seed deterioration and establish mechanistic links between priming interventions and longevity enhancement. These insights offer a theoretical framework for cultivating anti-deterioration crop varieties and developing seed longevity-enhancement technologies.

摘要

种子劣变是储存过程中不可避免的过程,其特征是发芽能力逐渐丧失并最终导致种子死亡,这对种子寿命和遗传资源的保存构成了挑战。了解驱动种子老化的分子机制和内在抗性途径,以及为劣变种子开发创新的复壮策略,对于农业可持续发展和种质库建设至关重要。本综述系统地研究了:(1)涉及活性氧(ROS)和大分子损伤级联反应的氧化还原调节劣变途径;(2)由抗氧化系统和大分子修复机制介导的抗劣变机制;(3)控制种子抗老化的遗传-表观遗传网络,特别是通过ABI3/ABI5/LEC1调控子介导的ABA和IAA信号传导;(4)通过代谢重置和修复增强来恢复老化种子的种子引发技术进展。通过将多组学见解与生理学证据相结合,我们提出了种子劣变的层次模型,并建立了引发干预与寿命延长之间的机制联系。这些见解为培育抗劣变作物品种和开发延长种子寿命的技术提供了理论框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b9f/12158146/25d3eb2cd901/plants-14-01730-g001.jpg

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