Li Jiaxin, Yu Qinhan, Liu Chang, Zhang Ningbo, Xu Weirong
College of Enology & Horticulture, Ningxia University, No.498 Helanshan West Street, Xixia District, Yinchuan, Ningxia 750021, China.
School of Life Science, Ningxia University, No.498 Helanshan West Street, Xixia District, Yinchuan, Ningxia 750021, China.
Hortic Res. 2025 Jan 2;12(4):uhae366. doi: 10.1093/hr/uhae366. eCollection 2025 Apr.
Cold stress profoundly affects the growth, development, and productivity of horticultural crops. Among the diverse strategies plants employ to mitigate the adverse effects of cold stress, flavonoids have emerged as pivotal components in enhancing plant resilience. This review was written to systematically highlight the critical role of flavonoids in plant cold tolerance, aiming to address the increasing need for sustainable horticultural practices under climate stress. We provide a comprehensive overview of the role of flavonoids in the cold tolerance of horticultural crops, emphasizing their biosynthesis pathways, molecular mechanisms, and regulatory aspects under cold stress conditions. We discuss how flavonoids act as antioxidants, scavenging reactive oxygen species (ROS) generated during cold stress, and how they regulate gene expression by modulating stress-responsive genes and pathways. Additionally, we explore the application of flavonoids in enhancing cold tolerance through genetic engineering and breeding strategies, offering insights into practical interventions for improving crop resilience. Despite significant advances, a research gap remains in understanding the precise molecular mechanisms by which specific flavonoids confer cold resistance, especially across different crop species. By addressing current knowledge gaps, proposing future research directions and highlighting implications for sustainable horticulture, we aim to advance strategies to enhance cold tolerance in horticultural crops.
低温胁迫对园艺作物的生长、发育和生产力有着深远影响。在植物用来减轻低温胁迫不利影响的多种策略中,黄酮类化合物已成为增强植物抗逆性的关键成分。撰写这篇综述的目的是系统地突出黄酮类化合物在植物抗寒中的关键作用,以满足气候胁迫下对可持续园艺实践日益增长的需求。我们全面概述了黄酮类化合物在园艺作物抗寒中的作用,重点介绍了它们在低温胁迫条件下的生物合成途径、分子机制和调控方面。我们讨论了黄酮类化合物如何作为抗氧化剂,清除低温胁迫期间产生的活性氧(ROS),以及它们如何通过调节胁迫响应基因和途径来调控基因表达。此外,我们探讨了通过基因工程和育种策略应用黄酮类化合物来增强抗寒性,为提高作物抗逆性的实际干预措施提供见解。尽管取得了重大进展,但在理解特定黄酮类化合物赋予抗寒能力的精确分子机制方面,尤其是在不同作物物种之间,仍存在研究空白。通过填补当前的知识空白、提出未来的研究方向并强调对可持续园艺的影响,我们旨在推进增强园艺作物抗寒能力的策略。