PLANT COLD ACCLIMATION: Freezing Tolerance Genes and Regulatory Mechanisms.

Michael F. Thomashow
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引用次数: 3183

Abstract

Many plants increase in freezing tolerance upon exposure to low nonfreezing temperatures, a phenomenon known as cold acclimation. In this review, recent advances in determining the nature and function of genes with roles in freezing tolerance and the mechanisms involved in low temperature gene regulation and signal transduction are described. One of the important conclusions to emerge from these studies is that cold acclimation includes the expression of certain cold-induced genes that function to stabilize membranes against freeze-induced injury. In addition, a family of Arabidopsis transcription factors, the CBF/DREB1 proteins, have been identified that control the expression of a regulon of cold-induced genes that increase plant freezing tolerance. These results along with many of the others summarized here further our understanding of the basic mechanisms that plants have evolved to survive freezing temperatures. In addition, the findings have potential practical applications as freezing temperatures are a major factor limiting the geographical locations suitable for growing crop and horticultural plants and periodically account for significant losses in plant productivity.

植物冷驯化:抗冻基因及其调控机制。
许多植物在暴露于较低的非冰冻温度时,耐寒性增加,这种现象被称为冷驯化。本文综述了耐冻基因的性质和功能以及低温基因调控和信号转导机制的研究进展。从这些研究中得出的一个重要结论是,冷驯化包括某些冷诱导基因的表达,这些基因的功能是稳定膜免受冻害。此外,已经鉴定出一个拟南芥转录因子家族,CBF/DREB1蛋白,可以控制增加植物抗冻性的冷诱导基因的调控表达。这些结果以及这里总结的许多其他结果进一步加深了我们对植物进化以在冰冻温度下生存的基本机制的理解。此外,这些发现具有潜在的实际应用价值,因为冰冻温度是限制适合种植作物和园艺植物的地理位置的一个主要因素,并定期造成植物生产力的重大损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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