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Plant responses to cold: transcriptome analysis of wheat

机译:植物对寒冷的反应:小麦的转录组分析

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Temperature and light are important environmental stimuli that have a profound influence on the growth and development of plants. Wheat varieties can be divided on the basis of whether they require an extended period of cold to flower (vernalization). Varieties that have a requirement for vernalization also tend to be winter hardy and are able to withstand quite extreme subzero temperatures. This capacity, however, is not constitutive and plants require a period of exposure to low, non?¢????freezing temperatures to acquire freezing tolerance: this process is referred to as cold acclimation. Cold acclimation and the acquisition of freezing tolerance require the orchestration of many different, seemingly disparate physiological and biochemical changes. These changes are, at least in part, mediated through the differential expression of many genes. Some of these genes code for effector molecules that participate directly to alleviate stress. Others code for proteins involved in signal transduction or transcription factors that control the expression of further banks of genes. In this review, we provide an overview of some of the main features of cold acclimation with particular focus on transcriptome reprogramming. In doing so, we highlight some of the important differences between cold?¢????hardy and cold?¢????sensitive varieties. An understanding of these processes is of great potential importance because cold and freezing stress are major limiting factors for growing crop plants and periodically account for significant losses in plant productivity.
机译:温度和光照是重要的环境刺激,对植物的生长和发育产生深远的影响。可以根据是否需要长时间的寒冷才能开花(春化),对小麦品种进行划分。需要春化处理的品种也往往耐寒,并且能够承受极低的零下温度。然而,这种能力不是构成性的,植物需要暴露于较低的非冷冻温度下以获得耐寒性:该过程称为冷驯化。冷适应和抗冻能力的获得要求协调许多不同的,看似完全不同的生理和生化变化。这些变化至少部分地通过许多基因的差异表达介导。这些基因中的一些编码直接参与减轻压力的效应分子。其他的则编码与信号转导或转录因子有关的蛋白,这些蛋白控制其他基因库的表达。在这篇综述中,我们概述了冷驯化的一些主要特征,尤其着重于转录组的重编程。在此过程中,我们重点介绍了耐寒品种和耐寒品种之间的一些重要区别。对这些过程的理解具有极大的潜在重要性,因为冷和冰冻胁迫是作物生长的主要限制因素,并且会定期造成植物生产力的重大损失。

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