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增强植物耐寒性的分子和生理反应

Molecular and Physiological Responses of Plants that Enhance Cold Tolerance.

作者信息

Zhou Lixia, Ullah Fazal, Zou Jixin, Zeng Xianhai

机构信息

National Key Laboratory for Tropical Crop Breeding, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China.

Hainan Key Laboratory of Tropical Oil Crops Biology, Coconut Research Institute, Chinese Academy of Tropical Agricultural Sciences, Wenchang 571339, China.

出版信息

Int J Mol Sci. 2025 Jan 29;26(3):1157. doi: 10.3390/ijms26031157.

Abstract

Low-temperature stress, including chilling and freezing injuries, significantly impacts plant growth in tropical and temperate regions. Plants respond to cold stress by activating mechanisms that enhance freezing tolerance, such as regulating photosynthesis, metabolism, and protein pathways and producing osmotic regulators and antioxidants. Membrane stability is crucial, with cold-resistant plants exhibiting higher lipid unsaturation to maintain fluidity and normal metabolism. Low temperatures disrupt reactive oxygen species (ROS) metabolism, leading to oxidative damage, which is mitigated by antioxidant defenses. Hormonal regulation, involving ABA, auxin, gibberellins, and others, further supports cold adaptation. Plants also manage osmotic balance by accumulating osmotic regulators like proline and sugars. Through complex regulatory pathways, including the ICE1-CBF-COR cascade, plants optimize gene expression to survive cold stress, ensuring adaptability to freezing conditions. This study reviews the recent advancements in genetic engineering technologies aimed at enhancing the cold resistance of agricultural crops. The goal is to provide insights for further improving plant cold tolerance and developing new cold-tolerant varieties.

摘要

低温胁迫,包括冷害和冻害,对热带和温带地区的植物生长有显著影响。植物通过激活增强抗冻性的机制来应对冷胁迫,例如调节光合作用、新陈代谢和蛋白质途径,以及产生渗透调节剂和抗氧化剂。膜稳定性至关重要,抗寒植物表现出更高的脂质不饱和度以维持流动性和正常代谢。低温会破坏活性氧(ROS)代谢,导致氧化损伤,而抗氧化防御可减轻这种损伤。涉及脱落酸(ABA)、生长素、赤霉素等的激素调节进一步支持植物的冷适应。植物还通过积累脯氨酸和糖类等渗透调节剂来维持渗透平衡。通过包括ICE1-CBF-COR级联在内的复杂调控途径,植物优化基因表达以在冷胁迫下存活,确保对冰冻条件的适应性。本研究综述了旨在提高农作物抗寒性的基因工程技术的最新进展。目的是为进一步提高植物耐寒性和培育新的耐寒品种提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c19/11818088/29e4ca020c12/ijms-26-01157-g001.jpg

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