Guy C
Plant Molecular and Cellular Biology Program, Department of Environmental Horticulture, University of Florida, Gainesville 32611-0670, USA.
J Mol Microbiol Biotechnol. 1999 Nov;1(2):231-42.
The Plant Kingdom encompasses a grouping of mostly sessile organisms that show extreme variation in morphology, size, ecological adaptation, life cycle, and climatic tolerance. With the exception of low elevation tropical environments, plants living just about anywhere else in the world may be subject to temperatures below that which are optimal for growth and survival. Consequently, the range of tolerance to low temperature stress in the Plant Kingdom is as great as the natural variation in low temperatures. For mesophilic plants, sub-optimal low temperature could range from 15 degrees C down to -55 degrees C. In the past 10 years, more than 100 genes have been shown to be preferentially expressed in response to low temperatures. Significant progress in understanding the responses of plants to low temperature has occurred in the areas of signal perception and transduction pathways, transcriptional control and the characterization of a variety of stress-related proteins. A common aim of much of the research on cold stress in plants is to find ways to enhance the stress tolerance and reduce economic losses.
植物界包含了一组大多固定不动的生物,这些生物在形态、大小、生态适应、生命周期和气候耐受性方面表现出极大的差异。除了低海拔热带环境外,世界上其他任何地方的植物都可能面临低于其生长和生存最适温度的情况。因此,植物界对低温胁迫的耐受范围与低温的自然变化范围一样大。对于中生植物来说,次优低温范围可能从15摄氏度到零下55摄氏度。在过去10年里,已有100多个基因被证明在低温响应中优先表达。在信号感知和转导途径、转录控制以及各种胁迫相关蛋白的表征等领域,人们对植物低温响应的理解取得了重大进展。植物低温胁迫研究的一个共同目标是找到提高胁迫耐受性和减少经济损失的方法。