Boothe J. G., De Beus M. D., Johnson-Flanagan A. M.
Department of Agriculture, Food and Nutritional Science, University of Alberta, Edmonton, Alberta, Canada T6G 2P5.
Plant Physiol. 1995 Jun;108(2):795-803. doi: 10.1104/pp.108.2.795.
BN28 is a low-temperature-induced, boiling-soluble protein in Brassica napus. We used antibodies raised against a recombinant BN28 to examine the expression of this protein in cold-acclimating plants and to investigate its relationship to plant freezing tolerance. Changes in the steady-state levels of BN28 protein appear to lag several days behind those of the mRNA. BN28 is first detected on immunoblots after approximately 8 d of exposure to low temperature, and thereafter levels remain stable while plants are maintained at 4[deg]C. Radiolabeling studies indicate that BN28 is synthesized at a relatively low rate. A decline in protein levels is observed soon after returning plants to control temperatures, and little or no protein can be detected after 7 d of deacclimation. The disappearance of the protein precedes a loss in freezing tolerance, suggesting that BN28 is not involved in maintaining plasma membrane integrity. Expression of BN28 is observed primarily in leaves and appears to be low-temperature specific. Quantitative analysis indicated that BN28 accumulates to approximately 82.7 pmol mg-1 total protein in cold-acclimated leaves. This concentration is similar to that reported for two group 2 late-embryogenesis-abundant-like proteins.
BN28是甘蓝型油菜中一种低温诱导的、可溶于沸水的蛋白质。我们使用针对重组BN28产生的抗体来检测这种蛋白质在低温驯化植物中的表达,并研究其与植物抗冻性的关系。BN28蛋白质稳态水平的变化似乎比mRNA的变化滞后几天。在暴露于低温约8天后,BN28首次在免疫印迹中被检测到,此后,当植物保持在4℃时,其水平保持稳定。放射性标记研究表明,BN28的合成速率相对较低。将植物恢复到对照温度后不久,蛋白质水平就会下降,脱驯化7天后几乎检测不到蛋白质。蛋白质的消失先于抗冻性的丧失,这表明BN28不参与维持质膜完整性。BN28的表达主要在叶片中观察到,并且似乎具有低温特异性。定量分析表明,在低温驯化的叶片中,BN28积累到约82.7 pmol mg-1总蛋白。这个浓度与报道的两种2类晚期胚胎丰富类蛋白的浓度相似。