Gilmour S J, Sebolt A M, Salazar M P, Everard J D, Thomashow M F
Department of Crop and Soil Sciences, Michigan State University, East Lansing, Michigan 48824-1325, USA.
Plant Physiol. 2000 Dec;124(4):1854-65. doi: 10.1104/pp.124.4.1854.
We further investigated the role of the Arabidopsis CBF regulatory genes in cold acclimation, the process whereby certain plants increase in freezing tolerance upon exposure to low temperature. The CBF genes, which are rapidly induced in response to low temperature, encode transcriptional activators that control the expression of genes containing the C-repeat/dehydration responsive element DNA regulatory element in their promoters. Constitutive expression of either CBF1 or CBF3 (also known as DREB1b and DREB1a, respectively) in transgenic Arabidopsis plants has been shown to induce the expression of target COR (cold-regulated) genes and to enhance freezing tolerance in nonacclimated plants. Here we demonstrate that overexpression of CBF3 in Arabidopsis also increases the freezing tolerance of cold-acclimated plants. Moreover, we show that it results in multiple biochemical changes associated with cold acclimation: CBF3-expressing plants had elevated levels of proline (Pro) and total soluble sugars, including sucrose, raffinose, glucose, and fructose. Plants overexpressing CBF3 also had elevated P5CS transcript levels suggesting that the increase in Pro levels resulted, at least in part, from increased expression of the key Pro biosynthetic enzyme Delta(1)-pyrroline-5-carboxylate synthase. These results lead us to propose that CBF3 integrates the activation of multiple components of the cold acclimation response.
我们进一步研究了拟南芥CBF调控基因在低温驯化过程中的作用,低温驯化是指某些植物在暴露于低温时,其抗冻能力会增强的过程。CBF基因在低温响应下会迅速被诱导,编码转录激活因子,这些激活因子可控制启动子中含有C-重复序列/脱水响应元件DNA调控元件的基因的表达。在转基因拟南芥植物中,组成型表达CBF1或CBF3(分别也称为DREB1b和DREB1a)已被证明可诱导靶标COR(冷调控)基因的表达,并增强未驯化植物的抗冻能力。在此我们证明,在拟南芥中过表达CBF3也会提高经低温驯化植物的抗冻能力。此外,我们表明这会导致与低温驯化相关的多种生化变化:表达CBF3的植物脯氨酸(Pro)和总可溶性糖(包括蔗糖、棉子糖、葡萄糖和果糖)水平升高。过表达CBF3的植物P5CS转录本水平也升高,这表明Pro水平的增加至少部分是由于关键脯氨酸生物合成酶Δ¹-吡咯啉-5-羧酸合成酶表达增加所致。这些结果使我们提出,CBF3整合了低温驯化反应多个组分的激活过程。