Role of Cold-Responsive Genes in Plant Freezing Tolerance1
作者:Michael F. Thomashow · 发表于:PLANT PHYSIOLOGY · 年份:1998 · DOI:10.1104/pp.118.1.1 · 被引用次数:704 · 研究领域:Plant Stress Responses and Tolerance、Light effects on plants、Plant Molecular Biology Research
Plants vary greatly in their ability to survive freezing temperatures. At one extreme are plants from tropical regions that have virtually no capacity to survive even the slightest freeze. In contrast, herbaceous plants from temperate regions generally survive freezing temperatures ranging from −5°C to −30°C, depending on the species, whereas perennials in the boreal forests routinely survive winter temperatures below −30°C. Significantly, the maximum freezing tolerance of plants is not “constitutive” but is induced in response to low, nonfreezing temperatures (below approximately 10°C), a phenomenon known as “cold acclimation.” Wheat plants grown at normal warm temperatures, for instance, are killed by freezing at about −5°C, but after cold acclimation, they can survive freezing temperatures as low as −20°C. What accounts for the differences in freezing tolerance among plant species and the increase in freezing tolerance that occurs with cold acclimation? Determining the answers to these questions is not only of basic scientific interest, but also has potential practical applications. Freezing temperatures periodically cause significant losses in plant productivity and limit the geographical locations where crop and horticultural plant species can be grown. Despite considerable effort, traditional breeding approaches have resulted in only modest improvements of freezing tolerance. For example, the freezing tolerance of the most hardy wheat varieties today is essentially the ...